Category: Sustainable Energy

  • MIL-OSI Asia-Pac: Till Feb 2025, Indian Railways Installs 209 MW Solar Plants at 2,249 Stations and Service Buildings

    Source: Government of India

    Till Feb 2025, Indian Railways Installs 209 MW Solar Plants at 2,249 Stations and Service Buildings

    Indian Railways Solar Power Expansion Reaches 2249 Installations Units with 1489 Added in the Last Five Years, 2.3 Times More Than 628 in the Previous Five Years

    Rajasthan Leads in Solar Power Expansion with the Highest 275 Installations Units Among All States and UTs

    Posted On: 02 APR 2025 7:45PM by PIB Delhi

    Indian Railways is making all endeavors to promote solar energy in line with the Government policies to proliferate renewable energy, environmental sustainability and to achieve long-term financial savings. The transition to renewable energy is an ongoing process.

    Indian Railways has planned to progressively procure renewable energy through different power procurement modes for Round The Clock (RTC) power, which is hybrid solution for renewable power includes solar and wind etc. Most of the work of setting up of solar plants is undertaken by Railways through Power Purchase Agreement under developer mode.

    During implementation of solar energy, many challenges like regulatory constraints, power evacuation and connectivity issues were faced by the railways. To tackle these issues, State Governments and Transmission Utilities were pursued on regular basis.

    So far, about 209 MW of solar plants on 2249 Railway stations and service buildings across the country have been provided. State-wise and year-wise details are as under:

     

    S.No.

    State

    Railway Stations Provided with Solar Plants (in Nos.)

     2014-15 to 2019-20

    2020-21 to February, 2025

    Cumulative
    upto February, 2025

    1

    Rajasthan

    73

    200

    275

    2

    Maharashtra

    43

    213

    270

    3

    West Bengal

    12

    222

    237

    4

    Uttar Pradesh

    78

    93

    204

    5

    Andhra Pradesh

    33

    126

    198

    6

    Karnataka

    86

    60

    146

    7

    Madhya Pradesh

    49

    74

    134

    8

    Odisha

    30

    103

    133

    9

    Gujarat

    11

    96

    112

    10

    Telangana

    35

    60

    95

    11

    Bihar

    25

    42

    81

    12

    Assam

    27

    48

    78

    13

    Tamil Nadu

    42

    31

    73

    14

    Jharkhand

    10

    35

    47

    15

    Haryana

    9

    23

    36

    16

    Punjab

    19

    11

    30

    17

    Uttarakhand

    1

    17

    18

    18

    Himanchal Pradesh

    1

    16

    17

    19

    Tripura

    15

    1

    16

    20

    Chhattisgarh

    10

    5

    16

    21

    Kerala

    12

    1

    13

    22

    Delhi

    4

    3

    8

    23

    J & K

    2

    4

    6

    24

    Nagaland

    0

    2

    2

    25

    Meghalaya

    0

    1

    1

    26

    Manipur

    0

    1

    1

    27

    Chandigarh

    0

    1

    1

    28

    Puducherry

    1

    0

    1

     

    Total

    628

    1489

    2249

     

    This information was given by the Union Minister of Railways, Information & Broadcasting and Electronics & Information Technology Shri Ashwini Vaishnaw in a written reply in Lok Sabha today.

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    MIL OSI Asia Pacific News

  • MIL-OSI: Nexif Ratch Energy Secures Pre-Development ECC for San Miguel Bay Wind Power Project in the Philippines

    Source: GlobeNewswire (MIL-OSI)

    MAKATI, Philippines, April 01, 2025 (GLOBE NEWSWIRE) — Nexif Ratch Energy is pleased to announce that its 500MW San Miguel Bay Wind Power Project has successfully obtained the Pre-Development Environmental Compliance Certificate (Pre-Dev ECC) on 3 March 2025. This certificate was granted by the Philippines’ Department of Environment and Natural Resources (DENR) in accordance with its administrative order and the Philippine Environmental Impact Statement System (PEISS).

    The Pre-Dev ECC approval paves the way for crucial pre-development activities, including offshore geotechnical and geophysical investigations, wind and metocean measurements, as well as environmental and social baseline and assessments. These activities are essential for understanding the project site’s characteristics, ensuring that development decisions are informed and sustainable.

    In December 2024, the San Miguel Bay Wind Project received the Certificate of Energy Project of National Significance (CEPNS) from the Department of Energy (DOE), alongside being recognized as a Strategic Investment under the Green Lane Initiative of the Philippine Board of Investments (BOI). The issuance of the Pre-Dev ECC further reinforces the project’s strategic importance in advancing the Philippines’ renewable energy goals, supporting the country’s clean energy transition.

    “This achievement marks a significant step forward in our commitment to developing offshore wind projects in the Philippines in an environmentally responsible manner,” said Cyril Dissescou, CEO of Nexif Ratch Energy. “It aligns with national priorities, and we are proud to contribute to the Philippines’ growing renewable energy sector.”

    In addition to San Miguel Bay, Nexif Ratch Energy is also progressing toward securing the Pre-Dev ECC for the 475 MW Lucena Wind Power Project in Quezon Province, after the project being awarded CEPNS in January 2025. These ongoing development efforts position the Company strongly for the upcoming Green Energy Auction 5 (GEA-5) by the DOE, slated for the third quarter of 2025.

    Nexif Ratch Energy remains committed to collaborating with key stakeholders and regulatory bodies to ensure the successful development of its offshore wind projects, with a focus on sustainable outcomes for both the environment and local communities.

    “We deeply appreciate the ongoing collaboration with the Philippine government in driving the nation’s renewable energy initiatives,” said Matthew Bartley, Chairman of the Development Committee at Nexif Ratch Energy. “The San Miguel Bay Offshore Wind Project, alongside the Lucena Offshore Wind Project, will play a pivotal role in advancing the Philippines’ clean energy transition. We are confident that both projects will be well-positioned for the upcoming Green Energy Auction Program”.

    About Nexif Ratch Energy

    Nexif Ratch Energy is a leading renewable energy company focused on the development, acquisition, construction, and operation of clean-energy projects across the Asia Pacific region. Headquartered in Singapore with regional offices in Vietnam, the Philippines and Thailand, the company’s portfolio includes 378 MW of operating, under-construction, and shovel-ready hydro, solar, and wind energy assets. Additionally, Nexif Ratch Energy has a development pipeline totaling 3.6 GW across wind, solar, and energy storage projects.

    Nexif Ratch Energy is jointly owned by Nexif Energy (Singapore) with a 51% stake and RATCH Group (Thailand) with a 49% stake.

    For Media Inquiries:

    Chariya Poopisit
    Nexif Ratch Energy
    communications@nexifratch.com

    The MIL Network

  • MIL-OSI USA: What They Are Saying: Trump Cabinet Voices Support for Cassidy’s Trade, Manufacturing Bill to Hold China Accountable

    US Senate News:

    Source: United States Senator for Louisiana Bill Cassidy

    [embedded content]
    WASHINGTON – U.S. Senator Bill Cassidy, M.D. (R-LA) released a new video featuring vocal support from several of President Trump’s Cabinet nominees for his Foreign Pollution Fee Act to level the playing field with Chinese manufacturing and expand American production. 
    During their confirmation hearings, U.S. Treasury Secretary Scott Bessent, U.S. Commerce Secretary Howard Lutnick, U.S. Interior Secretary Doug Burgum, U.S. Energy Secretary Chris Wright, U.S. Environmental Protection Agency (EPA) Administrator Lee Zeldin, and U.S. Trade Representative (USTR) Jamieson Greer all express interest in the proposal, noting that it aligns well with the Trump administration’s trade agenda. These exchanges come after Cassidy, joined by U.S. Senator Lindsey Graham (R-SC), released a new discussion draft of their Foreign Pollution Fee Act for public comment.
    A range of industries has expressed support for Cassidy’s efforts to craft a trade policy that strengthens U.S. manufacturers’ competitiveness and counter unfair competition from China, including the Steel Manufacturers Association, the American Iron and Steel Institute, the Portland Cement Association, the Aluminum Association, and the Solar Energy Manufacturers for America (SEMA) Coalition.
    “A strong border measure will allow American steel producers to benefit from the fact that they are global leaders in emissions efficiency. This can be a key part of any long-term solution to safeguard the domestic steel industry from the devastating effects of global overcapacity,” said Philip K. Bell, President, Steel Manufacturers Association. “We are encouraged to see Senator Cassidy and numerous Trump administration officials show aligned interest in advancing this policy design. We stand ready to work with them to advance a trade policy that helps U.S. steel manufacturers compete on a level playing field.”
    “Steel made in the United States is the cleanest in the world. Senator Cassidy has rightly determined that legislation is needed to hold foreign polluters accountable for their dirtier products, while enhancing the competitiveness of American steel manufacturers. AISI looks forward to working with him and others in Congress to craft a foreign pollution fee that applies to all imported steel products with higher emissions than products made the U.S., without imposing a carbon fee or tax on American manufacturers,” said Kevin Dempsey, President and CEO of the American Iron and Steel Institute.
    “American cement manufacturers believe that a well-constructed border measure will allow them to leverage their leadership in emissions efficiency. This is essential for any lasting strategy to protect the domestic cement industry from any global challenges,” said Mike Ireland, President and CEO of the Portland Cement Association. “It’s great to see Senator Cassidy and Trump administration officials expressing support for this policy approach. We are prepared to continue to collaborate with them to advance a trade policy that strengthens the competitiveness of U.S. cement producers.”
    “The SEMA Coalition supports Senator Cassidy’s 2025 Foreign Pollution Fee Act. For American solar manufacturers to compete on a level playing field and outcompete China, we need innovative border measures such as a foreign pollution fee. Any successful, long-term strategy to reshore the solar value chain must prioritize taking these steps to safeguard the domestic solar industry from the impacts of global overcapacity,” said Mike Carr, Executive Director of the Solar Energy Manufacturers for America (SEMA) Coalition. “We are grateful for Senator Cassidy’s leadership and look forward to working closely with him and the administration to advance trade and tax policies that ensure a level playing field with China and longevity for U.S. solar manufacturers and workers.” 
    The US aluminum industry produces some of the cleanest aluminum products in the world while facing ongoing pressure from international producers not subject to traditional market forces. Smart tariff policy recognizes this and provides incentives for both domestic and international production of cleaner aluminum.” said Will Brown, VP of Government Relations and International Programs, The Aluminum Association. “At the Aluminum Association, we look forward to continuing to work with Senator Cassidy to advance trade policies that strengthen the U.S. aluminum industry and its competitiveness in the global marketplace.”
     “According to recently released data from the US International Trade Commission (ITC), the carbon intensity of American-made Oil Country Tubular Goods (OCTG) is well below that of OCTG produced by China and its satellites. This environmental dumping combines with other forms of unfair trade practices that need to be addressed. Senator Cassidy’s legislation is a major step in holding foreign producers from China and its satellites accountable, as it not only strengthens American industries but also supports a cleaner, more competitive market for all,” said Luca Zanotti, Chairman of the United States OCTG Manufacturers Association (USOMA).         
    The Foreign Pollution Fee Act: 
    Combats China’s Exploitation of Trade Rules: By countering the unfair practices of non-market economies like China, ensuring American manufacturers can compete and thrive on a level playing field.
    Strengthens Global Supply Chain Resilience: Diversifying trade relationships will reduce dependence on adversarial nations, making supply chains more secure against geopolitical disruptions and enhancing national security.
    Revitalizes American Manufacturing: By discouraging imports of pollution-intensive goods, this policy will bring jobs back home, strengthen domestic industries, and reduce reliance on foreign suppliers.
    Expands U.S. Export Markets: As high-polluting countries modernize their industries, they’ll increasingly demand American-made inputs, feedstocks, and cutting-edge technologies, opening new opportunities for U.S. exports.
    Deepens Trade Ties with Allies: By promoting partnerships with nations that share our economic and environmental values, the Foreign Pollution Fee Act builds a coalition against predatory practices by the Chinese Communist Party, supporting emerging markets and allies alike.
    Rewards Leadership in Cleaner Manufacturing: By incentivizing international partners to adopt cleaner production methods while ensuring that domestic manufacturers maintain a competitive edge by continuing to lead in industrial decarbonization.
    Background
    Cassidy and Graham introduced an earlier version of their Foreign Pollution Fee Act to level the playing field with Chinese manufacturing and expand American production in 2023.
    The Foreign Pollution Fee Act was a key topic at Cassidy’s Louisiana Energy Security Summit in October 2024.The summit featured ten panels that explored protecting U.S. interests from unfair trade practices, Louisiana’s low-pollution manufacturing advantage, and the role of natural gas in strengthening U.S. geopolitical influence. Panelists included presidents and CEOs from Entergy, First Solar, Buzzi UnicemUSA, Orsted, and Aluminum Technologies, former Trump administration officials, and leaders from Louisiana trade associations and major energy and Fortune 500 companies. 
    In September 2024, he released the 3rd episode of Bill on the Hill, where he highlights his Foreign Pollution Fee Act and discusses China’s growing economy and military coming at the expense of the American worker. After hearing fellow Americans share their concerns, Cassidy presented his plan to address the nexus between economic development, national security, and the environment. 
    He penned editorials in Foreign Affairs, The Washington Times, and jointly in the USA Today Network discussing the geopolitical threat that China poses to U.S. global standing. 
    In 2023, the Louisiana Senate and House of Representatives unanimously adopted a resolution urging Congress to pursue an industrial manufacturing and trade policy to counter competition from China. Learn more here. 

    MIL OSI USA News

  • MIL-OSI Economics: Panasonic in Numbers: Solar Power Generation Systems at 13 Global Panasonic Industry Sites

    Source: Panasonic

    Headline: Panasonic in Numbers: Solar Power Generation Systems at 13 Global Panasonic Industry Sites

    Solar power generation systems were set for activation at 13 global Panasonic Industry sites in FY2024, utilizing renewable energy to contribute to achieving net-zero CO2 emissions for the company by 2030.
    Implemented through an on-site Power Purchase Agreement (PPA)1 and self-owned systems, the total power generation at the 13 sites is estimated to be 15 GWh/year2, reducing CO2 emissions by 7,781 tons annually. That’s equivalent to the amount of CO2 absorbed by 555,000 cedar trees3 over the same period!
    The installation is part of Panasonic Industry’s Environmental Vision, which aims to achieve both “a better life” and “a sustainable global environment” through technologies that contribute to decarbonization and support circular economy.

    1 On-site PPA is a system where companies enter into contracts with power operators to purchase renewable energy generated by newly installed power generation facilities. In FY2024, this system was utilized at 8 locations: Saga, Yamaguchi, Kumamoto, Tajima, Kanazu, Tsuyama, Hanoi (Vietnam), and Batam (Indonesia).
    2 Calculated assuming a solar power generation rate of 15%.
    3 Based on the estimation that each cedar tree absorbs an average of about 14 kg of CO2 per year.

    MIL OSI Economics

  • MIL-OSI USA: 4 College of Engineering Faculty Elected to CASE

    Source: US State of Connecticut

    For being “leading experts in science, technology, engineering, mathematics, and medicine,” the Connecticut Academy of Science and Engineering (CASE) is welcoming four faculty from UConn’s College of Engineering (CoE) into its membership.

    They are among 12 inductees from UConn, and 36 statewide. The new members will be introduced at the Academy’s 50th Annual Dinner on May 28.

    Election to CASE is open to scientists and engineers who work or live in Connecticut based on scientific distinction achieved through significant original contributions in theory or applications, unusual accomplishments in the pioneering of new and developing fields of applied science and technology, or both.

    The 2025 CASE inductees from the CoE include:
    • Omer Khan, professor of electrical and computer engineering

    • Ji-Cheng “JC” Zhao, dean of the College of Engineering; professor of materials science and engineering

    • Guoan Zheng, Collins Aerospace Professor of Engineering Innovation in the Department of Biomedical Engineering; and director of the UConn Center for Biomedical and Bioengineering Innovation

    • Xiao-Dong Zhou, Connecticut Clean Energy Fund Professor in Sustainable Energy; the Nicholas E. Madonna Chair in Sustainability; director of the Center for Clean Energy Engineering; and professor of chemical and biomolecular engineering, materials science and engineering, and mechanical engineering

    “CASE is honored to have these outstanding scientists and engineers join us as we seek to fulfill our mission to provide evidence-based advice to inform policy and promote innovation in Connecticut,” says CASE President Amy Howell.

    Brief bios of the 2025 CASE Fellows are below:

    Omer Khan

    Omer Khan leads the Computer Architecture Group (CAG) and serves as an associate director of the Connecticut Advanced Computing Center (CACC). His research interests include computer architectures and methods that exploit parallelism, locality, resiliency, and privacy suitable for high-performance applications, such as graph intelligence problems. He has contributed architectural advancements for futuristic massively parallel microprocessors that substantially enhance system level performance and efficiency.

    Most recently, Khan and his colleagues took a hardware-architecture-algorithm approach to develop a new system architecture that helps optimize multiple goals at once, like finding the best trade-off between speed and fuel efficiency for autonomous vehicles. They propose Ordered Parallel Multi-Objective Search, or OPMOS, that exploits massive parallelism to achieve huge improvements in performance.

    “OPMOS is a unique approach that brings together algorithmic optimizations and architectural insights to rapidly accelerate these computationally hard multi-objective graph intelligence problems,” Khan explains. “This means exact solutions that used to take hours to generate can be found in seconds. This allows decision-makers to have access to real-time information, leading to better decision-making in high-impact application scenarios.”

    As a complementary research effort, Khan is addressing the computational complexity problem in artificial intelligence applications, such as autonomous systems, social influence, and chip design that must handle increasingly large and sparse graph-based data.

    “Efficient processing of sparse graph problems is extremely challenging since the underlying computations require complex mathematical operations whose processing suffers from performance scaling challenges on existing hardware processing units,” Khan explains. Khan and his colleagues are developing parallel hardware architectures that exploit sparsity for performance to reduce computational complexity without compromising accuracy.

    Prior to joining UConn, Khan spent several years in the semiconductor industry as a high-performance processor architect.

    Khan has a BS in electrical and computer engineering from Michigan State University (2000) and a Ph.D. in electrical and computer engineering from the University of Massachusetts Amherst (2009).

    Ji-Cheng “JC” Zhao

    Ji-Cheng “JC” Zhao is an expert on design of advanced alloys and coatings, additive manufacturing (3D printing) of alloys and composites, high-throughput materials science methodologies, and computational thermodynamics and kinetics. He previously served as a director at the U.S. Department of Energy’s ARPA-E (Advanced Research Projects Agency—Energy), managing approximately $100 million in projects to develop energy-efficient and green technologies.

    Before working in academia and government, Zhao was a senior materials scientist and project leader at General Electric (GE) Research Center where he invented new materials and processes, mostly for gas turbines and jet engines, leading to 48 U.S. patents.

    As dean of engineering at UConn, Zhao is working to expand the College’s research footprint, launch impactful educational programs, and advance relationships with local, national, and international partners.

    Zhao is a member of the National Academy of Engineering and the Fellow of the American Association for the Advancement of Science, the National Academy of Inventors, ASM International, the Materials Research Society, and the Minerals, Metals, and Materials Society.
    Zhao has a BS in materials science and engineering from Central South University in Hunan, China (1985) and a Ph.D. in materials science and engineering from Lehigh University (1995).

    Guoan Zheng

    Guoan Zheng is an expert on biomedical optics and instrumentation, computational imaging, microscopy, and chip-scale imaging. At UConn’s Smart Imaging Laboratory, he leads a team of researchers who are developing a new technique called Synthetic Aperture Ptycho-Endoscopy (SAPE), which achieves outstanding resolution and visibility in endoscopic images. Since its inception in 2013, the laboratory has been supported by NSF, NIH, DOE, Connecticut Innovations, and partnerships with multiple industry leaders.

    Zheng is also the inventor of Fourier ptychography, a transformative microscopy technique that has become a global standard, now widely adopted across numerous laboratories worldwide. The technique is featured as a chapter in the most widely read textbook on Fourier optics.

    He’s also a member of Optica and SPIE, the international society for optics and photonics.

    Zheng holds a BS in electrical engineering from Zhejiang University (2007); and a Ph.D. in electrical engineering from the California Institute of Technology (2013).

    Xiao-Dong Zhou

    Xiao-Dong Zhou is passionate about reducing greenhouse gas emissions through the development of advanced materials and innovative, efficient processes. He’s an expert on nonequilibrium thermodynamics, electrochemistry, thermodynamics and electrochemistry in fuel cells, electrolyzers, and batteries, and studies ways small molecules—such as oxygen, water, carbon dioxide and methane—can be used to create value-added commodities.

    At UConn, Zhou serves as a special advisor on sustainable energies to President Radenka Maric and Vice President for Research Pamir Alpay. In this role, he provides guidance and contributes to the development of sustainable energy strategies and initiatives across the university.

    Zhou currently serves as the technical editor of the Journal of The Electrochemical Society, and an associate editor of the Journal of the American Ceramic Society and the International Journal of Ceramic Engineering and Science. Since 2017, Zhou has secured more than $23 million in grants from the National Science Foundation, NASA, and the Department of Energy.

    Zhou received his BS in chemical engineering from East China University of Science and Technology and his Ph.D. in ceramic engineering from the University of Missouri-Rolla.

    In 2012, CASE elected Pamir Alpay, vice president for research, innovation, and entrepreneurship and professor of materials science and engineering to its membership. He’s among 20 engineering faculty from UConn—including the four new inductees—who are CASE members.

    “We’re thrilled to have Professors Zhao, Zheng, Khan, and Zhou join our membership at the Connecticut Academy of Science and Engineering,” Alpay says. “This achievement is a testament to their contributions to research and innovation, and their dedication to advancing knowledge in engineering fields. Their work continues to inspire excellence within our academic community at the CoE.”

    The CoE faculty are among 12 newly elected CASE members at UConn. One third of all new inductees statewide are UConn faculty. Others 2025 inductees include:

    • Gerald Berkowitz, professor of horticulture, University of Connecticut College of Agriculture, Health and Natural Resources
    • Ming-Hui Chen, department head of statistics; Board of Trustees Distinguished Professor, University of Connecticut College of Liberal Arts and Sciences
    • Jie He, professor of chemistry, University of Connecticut College of Liberal Arts and Sciences
    • Guozhen Lu, professor of mathematics; director of Mathematical Sciences Research Collaboratory, University of Connecticut College of Liberal Arts and Sciences
    • Xiuling Lu, professor of pharmaceutical sciences; associate director of the Kildsig Center for Pharmaceutical Processing Research, University of Connecticut School of Pharmacy
    • Vijay Rathinam, professor of immunology, University of Connecticut Health Center School of Medicine
    • Kumar Venkitanarayanan, professor of animal science; associate dean for Research and Graduate Studies, University of Connecticut College of Agriculture, Health and Natural Resources
    • Jing Zhao, professor of chemistry, University of Connecticut College of Liberal Arts and Sciences

    UConn Engineering continues to have a strong presence in CASE membership. Khan, Zhao, Zheng, and Zhou join 16 other faculty from the College of Engineering who are already members of CASE.

    CASE was chartered by the Connecticut General Assembly in 1976 to provide expert guidance on science and technology to the people and to the state of Connecticut, and to promote the application of science and technology to human welfare and economic well-being.

    For more information about CASE, visit https://ctcase.org.

    MIL OSI USA News

  • MIL-OSI United Nations: Can renewable energy survive climate change?

    Source: United Nations MIL OSI b

    The race towards renewable energy is accelerating, and for all the looming challenges of the climate crisis, signs of progress are there: Solar panels are beginning to blanket deserts, wind turbines dot coastlines, and hydropower dams are harnessing powerful rivers to churn out clean electricity.

    Yet, even as the push for renewables gains momentum – driven by cheaper technology and an urgent need to slash carbon emissions – experts are waving cautionary flags: Because renewable energy sources depend on weather conditions, climate change is increasingly dictating, and jeopardizing, renewable energy production.

    This trend became more pronounced in 2023, marked by a volatility that disrupted renewable energy generation globally. Temperatures soared 1.45°C above pre-industrial levels, and the shift from La Niña to El Niño altered rainfall, wind patterns, and solar radiation.

    Hamid Bastani, a climate and energy expert with the World Meteorological Organization (WMO), provided a stark example of this impact. “In Sudan and Namibia, hydropower output dropped by more than 50 per cent due to unusually low rainfall,” he said in an interview with UN News.

    In Sudan, rainfall totaled just 100 millimeters (less than four inches) in 2023—less than half the national long-term average.

    “This is a country where hydropower makes up around 60 per cent of the electricity mix. These reductions could have significant implications,” Mr. Bastani explained, noting that the power system supports a large and rapidly growing population of about 48 million.

    These shifts were not limited to hydropower. Wind energy, too, showed signs of stress under changing climate conditions.

    China, which accounts for 40 per cent of global onshore wind capacity, saw only a modest 4 to 8 per cent increase in output in 2023, as wind anomalies disrupted generation. In India, production declined amid weaker monsoon winds, while some regions in Africa experienced even sharper losses, with wind output falling by as much as 20 to 30 per cent.

    South America, meanwhile, saw the scale tip in the other direction. Clear skies and elevated solar radiation boosted solar panel performance, particularly in countries like Brazil, Colombia, and Bolivia.

    As such, the region saw a four to six per cent increase in solar generation – a climate-driven bump that translated to roughly three terawatt-hours of additional electricity, enough to power over two million homes for a year at average consumption rates.

    “This is a good example of how climate variability can sometimes create opportunity,” explains Roberta Boscolo, who leads WMO’s New York Office and formerly the agency’s climate and energy work. “In Europe, too, we are seeing more days with high solar radiation, meaning solar power is becoming more efficient over time.”

    Ms. Boscolo and Mr. Bastani are among the contributors to a recent WMO–IRENA study examining how climate conditions in 2023, shaped by El Niño, global warming, and regional extremes, affected both renewable energy generation and energy demand worldwide.

    ADB/Patarapol Tularak

    Solar power accounted for over 73 percent of all new renewable capacity added globally in 2023, making it the fastest-growing source of energy worldwide.​

    Systems built on stability, in a world that is anything but

    Ms. Boscolo, who has spent years working at the intersection of climate science and energy policy, is quick to point out the vulnerability of renewable energy infrastructure. Dams, solar farms, and wind turbines are all designed based on past climate patterns, making them susceptible to the changing climate.

    Take hydropower. Dams rely on predictable seasonal flows, often fed by snowmelt or glacial runoff. “There will be a short-term boost in hydropower as glaciers melt,” she said. “But once those glaciers are gone, so is the water. And that is irreversible – at least on human timescales.”

    This pattern is already unfolding in regions like the Andes and the Himalayas. If the meltwater disappears, countries will need to replace the way they generate power or face long-term energy deficits.

    recent report from the UN Environment Programme (UNEP), for example, pointed out that rising sea levels and stronger storms pose growing risks to energy production facilities, including solar farms located near coastlines.

    Similarly, increasingly intense and frequent wildfires can also take down power lines and black out entire regions, while extreme heat can reduce the efficiency of solar panels and strain grid infrastructure—just as demand for cooling peaks.

    Nuclear power plants are also at risk in the changing climate.

    “We have seen nuclear power plants that could not operate because of the lack of water… for cooling,” Ms. Boscolo said. As heatwaves become more frequent and river levels drop, some older nuclear facilities may no longer be viable in their current locations.

    “This is another thing that should be looked at with different eyes in the future . When we design, when we build, when we project power generation infrastructure, we really need to think about what the climate of the future will be, not what was the climate of the past”.

    IMF/Crispin Rodwell

    Global renewable electricity capacity grew by nearly 50 percent in 2023—the largest annual increase in two decades—with most additions coming from solar and wind.​

    Adapting to the future through data, AI and technology

    The expert underscores that one thing is certain: Our planet is heading towards a future in which electricity, especially from renewable sources, will be central.

    “Our transport is going to be electric; our cooking is going to be electric; our heating is going to be electric. So, if we do not have a reliable electricity system, everything is going to collapse. We will need to have this climate intelligence when we think about how to change our energy systems and the reliability and the resilience of our energy system in the future.”

    Indeed, to adapt, both experts emphasized a need to embrace what they call climate intelligence – the integration of climate forecasts, data, and science into every level of energy planning.

    “In the past, energy planners worked with historical averages,” Mr. Bastani explained. “But the past is no longer a reliable guide. We need to know what the wind will be doing next season, what rainfall will look like next year – not just what it looked like a decade ago.”

    In Chile, for instance, hydropower generation surged by as much as 80 per cent in November 2023, due to unusually high rainfall. While this increase was climate-driven, experts say advanced seasonal forecasting could help dam operators better anticipate such events in the future and manage reservoirs to store water more effectively.

    Similarly, wind farm workers can use forecasts to schedule maintenance during low-wind periods – minimizing downtime and avoiding losses. Grid operators, too, can plan for energy spikes during heatwaves or droughts.

    “We now have forecasts that span from a few seconds ahead to several months,” Mr. Bastani said. “Each one has a specific application – from immediate grid balancing to long-term investment decisions.”

    WMO/Sandro Puncet

    Improved climate forecasting can help energy systems plan days to seasons ahead.

    Artificial intelligence (AI) is lending a hand: Machine learning models trained on climate and energy data can now predict resource fluctuations with higher resolution and accuracy. These tools could help optimize when to deploy battery storage or shift energy between regions, making the system more flexible and responsive.

    “These models can help operators better anticipate fluctuations in wind, rainfall, or solar radiation”, Mr. Bastain explained.

    For example, two recent WMO energy mini projects illustrated how artificial intelligence can be applied in real-world renewable energy planning. In Costa Rica, the agency worked with national energy authorities to develop and implement an AI-based model for short-term wind speed forecasting. The tool is now integrated into the Costa Rican Electricity Institute’s internal energy forecasting platform, helping optimize operations at selected wind farms.

    In Chile, another project focused on floating solar technology, using AI to estimate evaporation rates on reservoirs. The results, now incorporated into Chile’s official Solar Energy Explorer platform, showed that floating solar panels can reduce water evaporation by up to 85 per cent in summer, with a national average of 77 per cent.

    Indeed, the promise and challenge of climate-smart renewable planning are most evident in the Global South. Africa, for instance, boasts some of the best solar potential on the planet, yet only two per cent of the world’s installed renewable capacity is found on the continent.

    Why the gap? Ms. Boscolo points to a lack of data and investment.

    “In many parts of the Global South, there just is not enough observational data to create accurate forecasts or make energy projects bankable,” she said. “Investors need to see reliable long-term projections. Without that, the risk is too high.”

    WMO is working to improve weather and energy monitoring in underserved regions, but progress is uneven. The agency is calling for more funding for local data networks, cross-border energy planning, and climate services tailored to regional needs.

    “This is not just about climate mitigation,” Ms. Boscolo added. “It is a development opportunity. Renewable energy can bring electricity to communities, drive industrial growth, and create jobs if the systems are designed right.”

    Mr. Bastani sees a need for global data sharing between energy companies and climate scientists.

    “There is a huge untapped potential in the data collected by the private sector… integrating historical and real-time observations from power plants – solar, wind, hydropower, even nuclear – can significantly improve weather and climate models. This is a win-win.”

    IMF/Lisa Marie David

    Climate forecasting helps energy companies anticipate weather-driven changes in supply and demand, improving reliability and reducing risk.

    Diversifying the energy portfolio to adapt

    Another key action to guarantee clean energy in the near future is diversification. Relying too heavily on only one renewable source can expose countries to seasonal or long-term shifts in climate, Mr. Bastani explains.

    In Europe, for example, energy planners are increasingly concerned about something called “dunkelflaute”— a period of cloudy, windless weather in winter that undermines both solar power and wind generation. This phenomenon, linked to high-pressure systems known as anticyclonic gloom, has prompted calls for more energy storage and backup power.

    “A diversified mix that includes solar, wind, hydro, battery storage, and even low-carbon sources (like geothermal) is essential,” Mr. Bastani said. “Especially as extreme weather becomes more frequent.”

    Into the future

    As the world races towards a future powered by renewable energy, addressing the challenges posed by climate change is imperative. The volatility experienced in 2023 underscores the need for climate-smart planning and infrastructure that can withstand unpredictable shifts in weather patterns.

    For renewable energy to truly fulfill its promise, the world must invest not only in expanding capacity but also in building a system that is resilient, adaptable, and informed by the best available climate science.

    WMO experts Hamid Bastani and Roberta Boscolo emphasize the importance of integrating climate intelligence into energy systems to ensure their reliability and resilience. By leveraging advanced forecasting and artificial intelligence, we can better anticipate and adapt to these changes, optimizing renewable energy production and safeguarding our future.

    The future of energy is not just about more wind turbines and solar panels, but also about ensuring they can withstand the very forces they are meant to mitigate.

    MIL OSI United Nations News

  • MIL-OSI USA: CASE Class of 2025 Includes 12 UConn Faculty Members

    Source: US State of Connecticut

    The Connecticut Academy of Science and Engineering (CASE) is marking its 50th anniversary with a class of inductees featuring a significant UConn presence.

    Twelve UConn faculty members from across multiple schools and colleges are among the 36 total new members for the CASE Class of 2025. The Academy is comprised of top researchers, scholars, scientists, and engineers who have made significant original contributions to their respective fields.

    CASE

    UConn accounts for one-third of the entire 36-person class of new inductees. CASE will formally introduce the honorees at the Academy’s 50th Annual Dinner, which will be held at UConn’s main campus in Storrs on May 28.

    Faculty from the College of Engineering, College of Liberal Arts and Sciences (CLAS), College of Agriculture, Health and Natural Resources (CAHNR), School of Medicine, and School of Pharmacy are represented as inductees. They join hundreds of UConn leaders and researchers who are CASE members dating back to the Academy’s founding in 1975. The 12 inductees matches UConn’s total from 2024.

    “UConn’s inductees to CASE exemplify the University’s commitment to excellence across many disciplines,” says Pamir Alpay, UConn’s vice president for research, innovation, and entrepreneurship, as well as a CASE member. “Through their work as researchers and as educators, these faculty members are contributing to advancing science and engineering as they instruct the next generation to make its own positive impact. Congratulations to all of UConn’s 2025 inductees and thank you for your dedicated work on behalf of the State of Connecticut.”

    Scientists and engineers living or working in Connecticut are eligible for CASE election. The Connecticut General Assembly established the Academy in 1976, seeking to provide expert guidance on science and technology to the State. Each member of CASE has achieved a level of scientific distinction through original contributions to science and engineering.

    “CASE is honored to have these outstanding scientists and engineers join us as we seek to fulfill our mission to provide evidence-based advice to inform policy and promote innovation in Connecticut,” says CASE President Amy Howell.

    The following UConn faculty members will be introduced in late May:

    • Gerald Berkowitz, Professor of Horticulture, CAHNR
    • Ming-Hui Chen, Department Head of Statistics; Board of Trustees Distinguished Professor, CLAS
    • Jie He, Professor of Chemistry, CLAS
    • Omer Khan, Professor of Electrical and Computer Engineering, COE
    • Guozhen Lu, Professor of Mathematics; Director of Mathematical Sciences Research Collaboratory, CLAS
    • Xiuling Lu, Professor of Pharmaceutical Sciences; Associate Director, Kildsig Center for Pharmaceutical Processing Research, School of Pharmacy
    • Vijay Rathinam, Professor of Immunology, UConn Health School of Medicine
    • Kumar Venkitanarayanan, Professor of Animal Science; Associate Dean for Research and Graduate Studies, CAHNR
    • Ji-Cheng Zhao, Dean of the College of Engineering; Professor of Materials Science and Engineering, COE
    • Jing Zhao, Professor of Chemistry, CLAS
    • Guoan Zheng, UTC Associate Professor of Biomedical Engineering; Director, UConn Center for Biomedical and Bioengineering Innovation, COE
    • Xiao-Dong Zhou, Connecticut Clean Energy Fund Professor in Sustainable Energy; The Nicholas E. Madonna Chair in Sustainability; Director, Center for Clean Energy Engineering; Professor of Chemical and Biomolecular Engineering, Materials Science and Engineering, and Mechanical Engineering, COE

    MIL OSI USA News

  • MIL-OSI Banking: ADB’s Partnership with Canada

    Source: Asia Development Bank

    • ADB and Canada have been working together for nearly six decades to tackle some of the most pressing development challenges in Asia and the Pacific.

    Article | 24 March 2025

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    For nearly six decades, the Asian Development Bank (ADB) and Canada have collaborated to tackle some of the most pressing development challenges in Asia and the Pacific. From advancing gender equality to addressing the climate crisis, environmental degradation, and poverty and inequality, the partnership has played an important role in the region’s sustainable development.

    A founding member of ADB, Canada has contributed $245 million to sovereign projects, matched by $868 million of ADB’s resources, and $530 million to ADB-managed trust funds. Canada-based private entities have also committed $383 million to nonsovereign operations.

    In 2023, Canada’s cofinancing commitments amounted to $6.9 million. In the same year, ADB’s Trade and Supply Chain Finance Program supported five Canadian exports and/or imports valued at $2.1 million.

    Advancing shared priorities

    Canada’s Indo-Pacific Strategy, launched in November 2022, identifies Asia and the Pacific as a region of immense opportunity. With an investment of about Can$2.3 billion over the next five years, the strategy signals Canada’s commitment to the region. It focuses on sustainable infrastructure, gender equality, climate change, and inclusive development. It also aligns efforts with global initiatives such as the G7 Partnership for Global Infrastructure Investment.

    Collaborating with FinDev Canada

    ADB and FinDev, Canada’s development finance institution, signed a memorandum of understanding in May 2023 to cooperate on sustainable and inclusive private sector investments that promote development in Asia and the Pacific. They will jointly support private sector growth and investments in emerging and developing markets that advance women’s economic empowerment, climate action, and local market development.

    Driving results through trust funds

    ADB’s trust funds are essential to mobilize private financing and accelerate private sector participation in development. Canada has supported 6 ADB-managed trust funds, including:

    Asia Pacific Project Preparation Facility. Enhancing infrastructure development with $63.3 million in collective contributions alongside Australia, Japan, and the Republic of Korea. It supports the preparation and structuring of infrastructure projects, with private sector participation, and bringing them to the global market.

    Canadian Climate and Nature Fund for the Private Sector in Asia. Supporting private sector projects in the region focused on climate and nature-based solutions, with $255 million in commitments.

    Canadian Climate Fund for the Private Sector in Asia. Catalyzing private investment in climate change mitigation and adaptation in Asia and the Pacific. It is ADB’s first concessional debt cofinancing facility focused on private sector climate actions, with $77.3 million in commitments.

    Canadian Climate Fund for the Private Sector in Asia II. Supporting private sector participation in climate change mitigation and adaptation in low- and lower-middle-income countries and upper-middle-income small island developing states, with $149.5 million in commitments.

    Stories of ADB-Canada partnerships

    Bangladesh: Keeping the Kids in Primary School. Bangladesh’s Primary Education Development Program, cofinanced by ADB and Canada, and other partners, introduced innovative approaches that changed the face of basic education in the country, such as the adoption of multimedia, teacher training, and reward schemes to encourage kids to stay in school.

    Lao People’s Democratic Republic: Southeast Asia’s Biggest Wind Power Plant. The Monsoon Wind Power Company is building a wind power plant in the Lao PDR. ADB and Canada, along with other partners, are cofinancing what is poised to become the largest wind power facility in Southeast Asia.

    Maldives: Boosting Small Businesses and the Blue Economy. ADB and Canada, along with other partners, are providing the Bank of Maldives with a financing package to boost small businesses and investments in sustainable blue economy projects.

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    MIL OSI Global Banks

  • MIL-OSI USA: Researcher Spotlight: Susan Habas’ Journey to Catalytic Innovation at NREL

    Source: US National Renewable Energy Laboratory

    From Sci-Fi Dreams to Scientific Discovery


    NREL’s Susan Habas stands in front of plasma catalysis equipment in her team’s lab. Photo by Frederick Baddour, NREL

    Susan Habas, now a senior scientist and distinguished member of research staff in the National Renewable Energy Laboratory’s (NREL’s) Catalytic Carbon Transformation and Scale-Up Center, had an unconventional start to her career in chemistry.

    Her research focuses on developing innovative catalysts for selective transformations of carbon sources into fuels and chemicals. She is a principal investigator in the Chemical Catalysis for Bioenergy Consortium, where she leads a multinational laboratory effort to advance new synthesis approaches and operando characterization capabilities for catalytic systems.

    “In high school, I thought I wanted to become a ‘biomedical genetic engineer.’ I had no idea what that meant (and I’m fairly sure it’s not a thing), but it was the ’90s, and there was so much compelling science out in the world—Michael Crichton’s ‘Jurassic Park’ and ‘ER,’ ‘The Hot Zone’ by Richard Preston, and advances in DNA analysis in forensics, as just a few examples,” she recalled. “For someone interested in science, the career options were exciting but overwhelming.”

    A freshman seminar at Wheaton College, titled “Science in Society,” intensified her love for sci-fi books—cyberpunk via Neal Stephenson in particular—but did not get her closer to choosing a career path. Habas majored in biology, thinking she might go to medical school, but classes in molecular biology and a summer program at The Jackson Laboratory working with mouse models for genetic research led her toward biochemistry.

    Encouragement from her chemistry professors helped her land a summer program in lanthanide and actinide chemistry at Los Alamos National Laboratory, solidifying her growing interest in chemistry and the national laboratory research environment.

    Finding Focus in Advanced Energy

    Habas’ journey to advanced energy R&D was not linear. Before completing her Ph.D. in chemistry at the University of California, Berkeley, she spent a year and a half as a Fulbright Scholar at Massey University in New Zealand working on carbon nanotube-based materials.

    Returning to the United States, Habas explored photoactive nanocrystals at Lawrence Berkeley National Laboratory.

    “At this point, I felt like I had finally found a reasonably focused career goal, at the intersection of materials chemistry and energy applications,” she shared.

    Curious about how fundamental discoveries transition to real-world applications, she found NREL to be a perfect fit for a postdoctoral position, where she could continue materials chemistry work while learning about photovoltaics and industry-scale challenges.

    Innovating With Catalysis and Plasma Science

    Today, Habas’ research focuses on developing tailored catalysts for a variety of chemical conversions targeted at fuels and chemicals production. One particularly exciting area is plasma catalysis, where applying an electrical potential to a gas can activate stable molecules like carbon dioxide and methane at low temperatures.

    “The excited species of the plasma can then react with one another to form higher-value products including long-chain hydrocarbon fuels and structured carbon materials,” Habas explained. “Another promising application is the use of plasmas at gas-liquid interfaces to precipitate and recover, ideally selectively, critical metals from dilute wastewater sources.”

    Habas also serves on the editorial board of EES Catalysis as an associate editor and is on the advisory board of Sustainable Energy & Fuels, contributing her expertise to help guide the future of catalytic research.

    “It has been an exciting (and challenging!) area of research to get involved in,” she added, “and it has been fantastic to work with and learn from incredibly talented early-career researchers with plasma expertise and to discover related programs and experts already at NREL.”

    The Joy of Lifelong Learning

    For Habas, the most rewarding aspect of her work is the constant evolution of science and her own learning journey.

    “The best part of my job, which is also emblematic of my career path, is learning about new science. And the best part about science is how it keeps advancing and how your career path can move with it,” she said. “I appreciate that NREL has enabled me to keep learning and branching into new areas of research and that there are great people here who are willing to help me learn and who share this enthusiasm.”

    MIL OSI USA News

  • MIL-Evening Report: If NZ wants to decarbonise energy, we need to know which renewables deliver the best payback

    Source: The Conversation (Au and NZ) – By Alan Brent, Professor and Chair in Sustainable Energy Systems, Te Herenga Waka — Victoria University of Wellington

    Getty Images

    A national energy strategy for Aotearoa New Zealand was meant to be ready at the end of last year. As it stands, we’re still waiting for a cohesive, all-encompassing plan to meet the country’s energy demand today and in the future.

    One would expect such a plan to first focus on reducing energy demand through improved energy efficiency across all sectors.

    The next step should be greater renewable electrification of all sectors. However, questions remain about the cradle-to-grave implications of investments in these renewable resources.

    We have conducted life-cycle assessments of several renewable electricity generation technologies, including wind and solar, that the country is investing in now. We found the carbon and energy footprints are quite small and favourably complement our current portfolio of renewable electricity generation assets.

    Meeting future demand

    The latest assessments provided by the Ministry of Business, Employment and Innovation echo earlier work by the grid operator Transpower. Both indicate that overall demand for electricity could nearly double by 2050.

    Many researchers believe these scenarios are an underestimate. One study suggests the power generation capacity will potentially need to increase threefold over this period. Other modelling efforts project current capacity will need to increase 13 times, especially if we want to decarbonise all sectors and export energy carriers such as hydrogen.

    This is, of course, because we want all new generation to come from renewable resources, with much lower capacity factors (the percentage of the year they deliver power) associated with their variability.

    Additional storage requirements will also be enormous. Following the termination of work on a proposed pumped hydro project, other options need investigating.

    Wind and solar are becoming the primary renewable technologies.
    Shutterstock/Kyohei Miyazaki

    Building renewable generation

    The latest World Energy Outlook published by the International Energy Agency (IEA) shows that wind and solar, primarily photovoltaic panels, are quickly taking over as the primary renewable technologies.

    This is also true in Aotearoa New Zealand. An updated version of the generation investment survey, commissioned by the Electricity Authority, shows most of the committed and actively pursued projects (to be commissioned by 2030) are solar photovoltaic and onshore wind farms.

    Offshore wind projects are on the horizon, too, but have been facing challenges such as proposed seabed mining in the same area and a lack of price stabilisation measures typical in other jurisdictions. New legislation aims to address some of these challenges.

    Distributed solar power (small-scale systems to power homes, buildings and communities) has seen near-exponential growth. Our analysis indicates wind (onshore and offshore) and distributed solar will make an almost equal contribution to power generation by 2050, with a slightly larger share by utility-scale solar.

    Cradle-to-grave analyses

    The main goal is to maintain a stable grid with secure and affordable electricity supply. But there are other sustainability considerations associated with what happens at the end of renewable technologies’ use and where their components come from.

    The IEA’s Global Critical Minerals Outlook shows the fast-growing global demand for a suite of materials with complex supply chains. We have also investigated the materials intensity of taking up these technologies in Aotearoa New Zealand, and discussed the greater dependence on those supply chains.

    The challenges in securing these metals in a sustainable manner include environmental and social impacts associated with the mining and processing of the materials and the manufacturing of different components that need to be transported for implementation here. There are also operating and maintenance requirements, including the replacement of components, and the dismantling of the assets in a responsible manner.

    We have undertaken comprehensive life-cycle assessments, based on international standards, of the recently commissioned onshore Harapaki wind farm, a proposed offshore wind farm in the South Taranaki Bight, a utility-scale solar farm in Waikato and distributed solar photovoltaic systems, with and without batteries, across the country.

    The usual metrics are energy inputs and carbon emissions because they describe the efficiency of these technologies. They are considered a first proxy of whether a technology is appropriate for a given context.

    Beyond that, we used the following specific metrics, as summarised in the table below:

    • GWP: global warming potential (carbon emissions during a technology’s life cycle per energy unit delivered).

    • CPBT: carbon payback time (how long a technology needs to be operational before its life cycle emissions equal the avoided emissions, either using the grid and its associated emissions or conventional natural gas turbines).

    • CED: cumulative energy demand over the life cycle of a technology.

    • EPBT: energy payback time (how long a technology needs to be operational before the electricity it generates equals the CED).

    • EROI: energy return on investment (the amount of usable energy delivered from an energy source compared to the energy required to extract, process and distribute that source, essentially quantifying the “profit” from energy production).

    There is much debate about the minimum energy return on investment that makes an energy source acceptable. A value of more than ten is generally viewed as positive.

    Life cycle assessment metrics of wind and solar power in Aotearoa New Zealand.
    Te Herenga Waka Victoria University of Wellington, CC BY-SA

    For all technologies we assessed, the overall greenhouse gas emissions are lower than the grid emissions factor. Because of New Zealand’s already low-emissions grid, the carbon payback time is around three to seven years for utility-scale generation. But for small-scale, distributed generation it can be up to 13 years. If the displacement of gas turbines is considered, the payback is halved.

    Energy return on investment is above ten for all technologies, but utility-scale generation is better than distributed solar, with values of between 30 and 75.

    To put this into perspective, the energy return on investment for hydropower, if operated for 100 years, is reported to be 110. Utility-scale wind and solar being commissioned now have an operational life of 30 years but are typically expected to be refurbished.

    This means their energy return on investment is becoming comparable to hydropower.

    The authors do not work for, consult, own shares in or receive funding from any company or organisation that would benefit from this article, and have disclosed no relevant affiliations beyond their academic appointment.

    ref. If NZ wants to decarbonise energy, we need to know which renewables deliver the best payback – https://theconversation.com/if-nz-wants-to-decarbonise-energy-we-need-to-know-which-renewables-deliver-the-best-payback-251819

    MIL OSI AnalysisEveningReport.nz

  • MIL-OSI Asia-Pac: BUDDHIST DEVELOPMENT PLAN UNDER PMJVK IN LADAKH AND OTHER HIMALAYAN STATES

    Source: Government of India

    Sl. No.

    Project Name

    State/UT

    District

    1

    Construction of Monastic Hostel cum Classrooms, Pemayangste

    Sikkim BDP

    Gyalshing

    2

    Construction of Monastic School Hostel cum Classrooms, Enchey monastic school

    Sikkim BDP

    Gangtok

    3

    Construction of Monastic Hostel cum Classrooms Khatek Pema Choling Monsastic School Pakyong

    Sikkim BDP

    Pakyong

    4

    Construction of Monastic Hostel cum Classrooms, Ngadak Gumpa , Namchi

    Sikkim BDP

    Namchi

    5

    Extension of existing Monastic hostel cum classrooms, sicheytamang Gumpa

    Sikkim BDP

    Gangtok

    6

    Construction of Community Meditation centre cum Multi- purpose Hall at Karthok Gumpa, Karthok, Pakyong.

    Sikkim BDP

    Pakyong

    7

    Construction of Monastic Hostel cum Classrooms at Boomtar Gumpa, Namchi

    Sikkim BDP

    Namchi

    8

    Construction of Monastic Hostel cum Classrooms at Sangay Choeling Gumpa,, Teendahharey Bhasmey

    Sikkim BDP

    Pakyong

    9

    Construction of Monastic Hostel cum Classrooms at Phuntsok Choeling Gumpa, Lower Sreebadam

    Sikkim BDP

    Soreng

    10

    Construction of Gostel cum classroom at Sanga Choling Gumpa, Martam

    Sikkim BDP

    Gangtok

    11

    Construction of proposed Dr.BheemRaoAmbedkar (Buddhist) Community, Multi-purpose hall and Library at Ambedkar Colony, 1st/D.L.Road, Dehradun

    Uttarakhand BDP

    Dehradun

    12

    Multipurpose Hall For Buddhist Community At Lakhanwala, Vikas Nagar, Dehradun

    Uttarakhand BDP

    Dehradun

    13

    Construction Of Proposed Educational And Sports Hall At 40 Buddha Vihar, 2nd D.L Road, Dehradun.

    Uttarakhand BDP

    Dehradun

    14

    Construction of the School building, incorporating Science Lab, Computer Lab & main Indoor Stadium etc. for Duzingphotang Ufti, Zansakar. District Kargil, UT of Ladakh.

    CIBS BDP

    District Kargil, UT of Ladakh.

    15

    New Academic building for traditional course at Central Institute of
    Buddhist studies. Leh. UT of Ladakh

    CIBS BDP

    Leh. UT of Ladakh

    16

    Infrastructure Development of Nalanda School at Nafra, West Kameng District

    Arunachal Pradesh

    West Kameng

    17

    Infrastructure development of Monk Hostel cum prayer Hall at Mechuka Gonpa

    Arunachal Pradesh

    Mechuka

    18

    Development of Hostel and Training Facilities at Lhagon Jangchub Choeling Monastery, Tezu

    Arunachal Pradesh

    Tezu

    19

    Multipurpose Hall at Nakhu Village, Nafra, West Kameng District

    Arunachal Pradesh

    West Kameng

    20

    Infrastructure Development of Thupten Dhonag Wosel Dargeyling at Mandala, Dirang, West Kameng district

    Arunachal Pradesh

    West Kameng

    21

    Infrastructure Development at Thardhoe Norbuling at Lumla, Tawang District

    Arunachal Pradesh

    Tawang

    22

    Development of Shambala and Shagrila Mythical Religious site and development of Community Centre Gompa at Hoongla Village, Tawang Disctrict

    Arunachal Pradesh

    Tawang

    23

    Development of Meditation Hall & Public Facilities at Urgan Sangha ChhoelingGonpa, Holocbari, Jia,Lower Dibang Valley.

    Arunachal Pradesh

    Lower Dibang Valley

    24

    Extension of Nyomsa Monastery at Jang, Tawang Disctrict

    Arunachal Pradesh

    Tawang

    25

    C/o Monk Quarter cum Meditation Hall & Library for Pemaziling Monastery at Muchukha Shi Yoma, Arunchal Pradesh

    Arunachal Pradesh

    Shi Yoma

    26

    Construction of Sports Climbing Wall at Mountaineering Sub Centre Jispa

    Himachal Pradesh (BDP)

    L & S

    27

    Purchasing Equipment of Sports, Mountaineering  Rescue for Mountaineering Sub Centre Jispa

    Himachal Pradesh (BDP)

    L & S

    28

    Providing Winter Water Supply scheme for habitation of GP Gondhla

    Himachal Pradesh (BDP)

    L & S

    29

    Construction of Hostel Block (Boys & Girls at Mountaineering Sub Centre Jispa (Separate blocks)

    Himachal Pradesh (BDP)

    L & S

    30

    Solarization of Schools (60 Schools)

    Himachal Pradesh (BDP)

    L & S

    31

    Construction of community centre/one stop centre building at village Yournath (Guskiyar)

    Himachal Pradesh (BDP)

    L & S

    32

    Construction of Tourist Information centre cum stay facility and two trekker huts at Tingret in Miyar valley, Sub-Division Udaipur Distt. LahaulSpiti.

    Himachal Pradesh (BDP)

    L & S

    33

    Nature Interpretation Centre cum Nature Park at Sissu Sub-Division Keylong Distt. LahaulSpiti.

    Himachal Pradesh (BDP)

    L & S

    34

    Installation of Off-Grid Solar Power Plants at Mountaineering Sub Centre Jispa

    Himachal Pradesh (BDP)

    L & S

    35

    Installation of Off-Grid Solar Power Plants at Health Institution of CMO Keylong

    Himachal Pradesh (BDP)

    L & S

    36

    100 KW capacity solar power plant with Battery Energy Storage System at Kaza

    Himachal Pradesh (BDP)

    L & S

    37

    Examination cum training Center (200 eater Capacity)

    Ladakh

    Kargil

    38

    Const. of Training cum Examination center(200 seater capacity) at ITI Leh

    Ladakh

    Ladakh

    39

    Construction of 2 storey building for souvenir Shop at Leh-Mana

    CIBS BDP

    Leh. UT of Ladakh

    40

    Development of Infrastructure at Central Institute of Himalayan Culture Studies (CIHCS), Arunachal Pradesh

    CIHCS

    Arunachal Pradesh

    41

    Centre for Advanced studies in Buddhist Studies at the University of Delhi (MoU)

    DU

    New Delhi

    42

    3 storey for Department of Sowa Rigpa Medicine and Surgery
    (Traditional Ayurveda) with attached College

    CIBS BDP

    Leh. UT of Ladakh

    MIL OSI Asia Pacific News

  • MIL-OSI United Nations: Ministerial meeting stresses need for strengthened international cooperation to accelerate just and inclusive energy transition for all in the Global South

    Source: United Nations Economic Commission for Europe

    Access to electricity worldwide has increased steadily since the adoption of the SDGs in 2015, to reach 90.7% of the world’s population in 2023 (up from 84.5% in 2015) while the world’s population rose from 7.44bn to 8.06bn in 2023

    Hundreds of millions of people have gained access to electricity, enjoying a better life through better access to education, health, business opportunities, mobility, etc. However, some 750 million people, with 600 million in sub-Saharan Africa, still lack access.  

    28 Ministers from Africa, Asis and the Pacific, Latin America and the Caribbean, met last week at two Ministerial gatherings at the Sustainable Energy for All (SEforALL) Global Forum in Bridgetown, Barbados, to advance climate resilience for populations in the Global South. 

    In their Communiqué, Ministers underscored the importance of enhanced global cooperation to support the growing energy needs in developing countries while addressing climate vulnerability.  

    The Communiqué also stresses the role of regional cooperation frameworks and reiterates commitments from the Dar es Salaam Declaration (January 2025) and highlights initiatives such as Mission 300 (M300), aiming to provide electricity access to 300 million people in Africa by 2030.   

    UNFC and UNRMS: supporting sustainable and just energy transitions 

    The Communiqué references the UN Framework Classification for Resources and the UN Resources Management System – endorsed by ECOSOC – as vital mechanisms to help countries translate their Nationally Determined Contributions (NDCs) commitments under the Paris Agreement into action.   

    UNFC and UNRMS are key tools in managing critical raw materials, promoting circular economy practices, and aligning financing strategies with national energy transition plans.  

    UNFC and UNRMS offer countries methodologies to encompass social and equity dimensions, including youth participation and workforce development, into energy transition plans, ensuring intergenerational equity and sustainable financing models. 

    By advocating for stronger policies, inclusive decision-making, and sustainable financing, UNECE’s energy work supports equitable and resilient energy transitions. 

    The dialogue on just and inclusive energy transitions will continue during the 20th session of the Group of Experts on Coal Mine Methane and Just Transition (CMMJT), where experts will further discuss pathways to strengthen international cooperation in support of a fair and sustainable transition. 

    The press release is available here

    MIL OSI United Nations News

  • MIL-OSI: Global Expansion of Turbo Energy Gains Momentum with Launch of Turbo Energy Solutions’ New Business Line in Latin America

    Source: GlobeNewswire (MIL-OSI)

    Introduces New Energy-as-a-Service (EaaS) Financing Model to Mitigate Large Initial Investments in Sustainable Energy Technologies by Customers in Chile

    Performance of the First SUNBOX Industry Installation in Temuco, Chile Successfully Put to the Test During Recent Massive Country-Wide Blackout Just Days After Activation

    VALENCIA, Spain, March 19, 2025 (GLOBE NEWSWIRE) — Turbo Energy, S.A. (NASDAQ:TURB) (“Turbo Energy” or the “Company”), a global provider of leading-edge, AI-optimized solar energy storage technologies and solutions, today proudly announced its expansion into Latin America with the formation of Turbo Energy Solutions (“TES”), a wholly owned subsidiary of the Company created to offer advanced, fully integrated, end-to-end solutions for scalable generation, storage and intelligent AI-optimized management of solar energy for commercial and industrial (“C&I”) customers in Chile.

    Turbo Energy Solutions, in collaboration with the Molina Brothers’ Smart Dock group, complete installation of Latin America’s first fully integrated solar generation, storage and AI-optimized energy management system at Alto Labranzo Shopping Center in Chile

    Through TES, the Company has also introduced its new Energy-as-a-Service financing program, which enables C&I customers in Chile to acquire, deploy and capitalize on advanced solar energy production systems integrated with SUNBOX Industry and its innovative AI-powered energy management system, without the need to make large upfront investments in equipment. Customers benefit from an optimized, efficient and sustainable energy supply while also taking full economic advantage of a payment system based on SUNBOX Industry’s AI-powered energy management performance. The EaaS financing program represents a potentially lucrative new recurring revenue stream for Turbo Energy that is expected to fuel exponential growth for the Company as market acceptance and adoption of SUNBOX Industry gains momentum in the region.

    Senior officials from Turbo Energy Solutions and the Smart Dock industrial group: (left to right) Andres Molina, TES Business Partner; Rafael Gonzalez, TES Solar Self-Consumption Director; Agustin Molina, TES Business Partner; Santiago Molina, TES Business Partner; Felipe Bozzo, TES LATAM Strategy Director; Javier Ferrer, TES Business Development Manager, SUNBOX Industry

    Marking the first project in partnership with the Smart Dock industrial group, an enterprise owned and operated by Chile’s prominent Molina Garcia family, TES completed the debut installation of the SUNBOX Industry smart energy storage system in the Alto Labranza shopping center located in Temuco, Chile. The full project involved the implementation of a hybrid solar generation and active storage system consisting of a photovoltaic installation integrated with the SUNBOX Industry system featuring 102.4 kWh of capacity and supported by Turbo Energy’s AI-optimized energy management system. It is estimated that Alto Labranza will produce more than 147 MWh of clean energy annually, while optimizing its energy efficiency.

    Within days following the live activation of the system at Alto Labranza, on February 26, 2025, Chile suffered a massive blackout that affected much of the country, from Arica to the Los Lagos region, including the nation’s capital, Santiago. Despite the widespread power outage, the Alto Labranza shopping center remained fully operational without interruptions, validating the viability, reliability and efficiency of renewable energy and smart storage in the operation of commercial facilities.

    “The installation in the Labranza center signifies the achievement of double milestones for our Company. On the one hand, it represents Turbo Energy’s entry into a leading country in renewable energy with an innovative business model, further demonstrating that execution of our planned global expansion initiative is on track and gaining traction. On the other hand, it represents the first smart storage system implemented in Latin America, setting a precedent for the incorporation of new models that promote the economic decarbonization of this high growth region,” said Mariano Soria, CEO of Turbo Energy.

    For more information on SUNBOX Industry smart energy storage solutions, please email Turbo Energy at sales@Turbo-e.com.  

    About Turbo Energy, S.A.

    Founded in 2013, Turbo Energy is a globally recognized pioneer of proprietary solar energy storage technologies and solutions managed through Artificial Intelligence. Turbo Energy’s elegant all-in-one and scalable, modular energy storage systems empower residential, commercial and industrial users expanding across Europe, North America and Latin America to materially reduce dependence on traditional energy sources, helping to lower electricity costs, provide peak shaving and uninterruptible power supply and realize a more sustainable, energy-efficient future. A testament to the Company’s commitment to innovation and industry disruption, Turbo Energy’s introduction of its flagship SUNBOX represents one of the world’s first high performance, competitively priced, all-in-one home solar energy storage systems, which also incorporates patented EV charging capability and powerful AI processes to optimize solar energy management.  Turbo Energy is a proud subsidiary of publicly traded Umbrella Global Energy, S.A., a vertically integrated, global collective of solar energy-focused companies.  For more information, please visit www.turbo-e.com

    Forward-Looking Statements

    Statements in this press release about future expectations, plans and prospects, as well as any other statements regarding matters that are not historical facts, may constitute “forward-looking statements” within the meaning of The Private Securities Litigation Reform Act of 1995. Forward-looking statements are neither historical facts nor assurances of future performance. Instead, they are based only on current beliefs, expectations and assumptions regarding the future of the business of the Company, future plans and strategies, projections, anticipated events and trends, the economy and other future conditions. The words “anticipate,” “believe,” “continue,” “could,” “estimate,” “expect,” “intend,” “may,” “plan,” “potential,” “predict,” “project,” “should,” “target,” “will,” “would” and similar expressions are intended to identify forward-looking statements, although not all forward-looking statements contain these identifying words. Because forward-looking statements relate to the future, they are subject to inherent uncertainties, risks and changes in circumstances that are difficult to predict and many of which are outside of our control, including the risks described in our registration statements and annual report under the heading “Risk Factors” as filed with the Securities and Exchange Commission. Actual results and financial condition may differ materially from those indicated in the forward-looking statements. Therefore, you should not rely on any of these forward-looking statements. Any forward-looking statements contained in this press release speak only as of the date hereof, and Turbo Energy, S.A. specifically disclaims any obligation to update any forward-looking statement, whether as a result of new information, future events or otherwise.

    For more information, please contact:
    At Turbo Energy, S.A.                                                 
    Dodi Handy, Director of Communications                       
    Phone: 407-960-4636                                                   
    Email: dodihandy@turbo-e.com 

    Attachments

    The MIL Network

  • MIL-OSI: Jackery Showcases Smart Essential Home Backup Solutions & Energy-Efficient Upgrades at National Hardware Show 2025

    Source: GlobeNewswire (MIL-OSI)

    LAS VEGAS, March 18, 2025 (GLOBE NEWSWIRE) — As spring kicks off and the season for home improvement gets underway, homeowners are focusing on upgrades that enhance efficiency, resilience, and sustainability. Jackery, a leader in reliable and innovative renewable energy solutions, is set to exhibit at the National Hardware Show 2025 in Las Vegas, showcasing cutting-edge essential home backup solutions designed to make homes smarter, stronger, and better prepared for any emergency.

    With extreme weather events and power disruptions becoming more frequent, Jackery continues to innovate, ensuring people have high-capacity, easy-to-use backup power solutions that not only provide peace of mind during outages, but also support long-term energy efficiency upgrades. Whether people are looking to modernize their energy systems, reduce electricity costs, or prepare for the unexpected, Jackery offers the perfect seasonal home upgrade for 2025.

    At the show, Jackery will showcase its industry-leading solar generator lineup, designed to power essential home functions during blackouts, storms, and emergencies. These plug-and-play, solar-compatible solutions keep refrigerators running, lights on, and communication devices charged—ensuring uninterrupted comfort and security when the grid goes down.

    Jackery’s Latest Innovations on Display

    Jackery’s 5000 Plus Essential Home Backup Kit – A Smarter Approach to Backup Power

    The modern alternative to whole-home energy storage systems. Designed for seamless, automatic backup, this high-capacity solar generator integrates with a Smart Transfer Switch to instantly restore power to essential appliances—keeping refrigerators, lights, WiFi routers, and other electronics running without interruption. Unlike traditional backup systems, the 5000 Plus is modular, allowing homeowners to expand their energy storage over time—a flexible, cost-effective solution that grows with their needs.

    This smart system makes it possible to save more with every charge. With the ability to prioritize solar charging and schedule charging during off-peak hours, users can optimize energy usage and cut electricity costs by up to 30% per month. When battery levels are above a set threshold, Jackery’s 5000 Plus Essential Home Backup Kit prioritizes solar charging; if they drop below, it seamlessly switches to hybrid solar + AC charging. Scheduled charging shifts energy consumption to lower-cost nighttime rates, maximizing savings.

    Plus, when not in use for essential home backup, the 5000 Plus transforms into a portable solar generator, perfect for job sites, DIY projects, and outdoor adventures.

    Jackery Solar Roof – The Future of Aesthetic, Integrated Solar Energy

    For homeowners investing in energy efficiency and cost-saving upgrades, the Jackery Solar Roof seamlessly combines form and function. The first-ever and only curved solar tiles available in the U.S., this sleek innovation blends into modern and traditional architecture while delivering industry-leading solar efficiency of over 25%. Designed to withstand extreme weather conditions, the Jackery Solar Roof helps homeowners future-proof their energy consumption and lower electricity bills, all while maintaining the architectural integrity of the home.

    Jackery HomePower 3000 – The Essential Home Backup for Every Household

    As homeowners look to spring and summer home upgrades that enhance reliability, efficiency, and resilience, the Jackery HomePower 3000 stands out as a must-have essential backup solution for any home. With a massive 3,072Wh capacity and 3,600W output (7,200W peak), it delivers seamless power to critical appliances, ensuring uninterrupted comfort and security during blackouts, storms, and emergencies. Designed for effortless plug-and-play use, it requires no installation, making it a versatile and cost-effective alternative to complex whole-home backup systems. With an ultra-fast UPS (≤20ms switching), the HomePower 3000 instantly detects and responds to power outages, keeping refrigerators, lights, and communication devices running without interruption. Its solar-ready compatibility also allows users to harness renewable energy for long-term savings and sustainability. Built with a durable, long-lasting LiFePO4 battery, the HomePower 3000 is engineered for safety, reliability, and all-season performance—making it a smart and practical home upgrade for those preparing for unpredictable weather, rising energy costs, and the need for greater energy independence.

    Upgrade Your Home This Season with Jackery – Visit Booth #W1001

    Spring and summer aren’t just about cosmetic upgrades—they’re the perfect time to invest in practical improvements that enhance home efficiency, resilience, and comfort. Jackery’s Essential Home Backup solutions offer energy independence, affordability, and peace of mind, ensuring people are prepared for outages while reducing reliance on the grid.

    Attendees at National Hardware Show 2025 can visit Booth #W1001 for a hands-on experience and to gain expert insights on integrating Jackery’s portable solar power solutions into their emergency preparedness and home upgrade plans.

    For more information about Jackery and its lineup of solar generators, visit www.jackery.com.

    About Jackery:

    Founded in California in 2012, Jackery is a leader in innovative solar generators and renewable energy solutions. Offering a diverse range of products from compact 100W units to robust 123kWh energy storage systems for whole-home backup, Jackery combines cutting-edge technology with a steadfast commitment to sustainability. Dedicated to providing reliable, renewable energy solutions, Jackery prioritizes convenience, trust, energy independence, and environmentally responsible practices. With over 150,000 five-star reviews, Jackery has earned the trust of customers worldwide. As of mid-year 2024, Jackery solar panels sold have saved 760 million kilowatt-hours of electricity and reduced carbon emissions by 758,000 tons—equivalent to the annual carbon emissions of a medium-sized city. To learn more, check out Jackery on Facebook, Instagram, X, YouTube, and LinkedIn.

    MEDIA CONTACTS
    ICR
    jackery@icrinc.com

    Rachel Stotts
    rachel.stotts@jackery.com

    The MIL Network

  • MIL-OSI United Nations: UNECE Resource Management Week 2025: Advancing Sustainable Resource Governance for a Just Energy Transition 

    Source: United Nations Economic Commission for Europe

    As demand for critical mineral resources surges and energy transitions reshape economies, UNECE Resource Management Week 2025 is where global experts, policymakers and industry leaders will come together to shape the policies and strategies to support a more sustainable future for resource governance. 

    Strengthening Global Resource Governance with UNFC and UNRMS 

    As critical minerals become increasingly essential to the energy transition, the 16th Session of the Expert Group on Resource Management (24–28 March) will explore how to ensure transparent, sustainable, and responsible resource governance. Discussions will focus on the United Nations Framework Classification for Resources (UNFC) and UN Resource Management System (UNRMS) and their role in securing supply while balancing environmental and social concerns and implementing UNFC under the EU Critical Raw Material Act. The International Centres of Excellence on Sustainable Resource Management in Central Asia, Mexico, Russian Federation and UK will share their national and regional priorities to deploy and disseminate UNFC and UNRMS.  

    The session will also feature the Geneva Dialogues on Mineral and Metal Resources, with a Joint UNEP and UNECE side event focused on circular economy solutions and responsible mining practices. Lectures will bring fresh insights, including a discussion led by the Norwegian Offshore Directorate’s Stig-Morten Knutsen on the potential of seabed minerals for energy and industry, addressing both opportunities and environmental risks. Other sessions will explore AI’s role in resource management and women’s leadership in resource management. The FutuRaM annual event on 26 March will highlight advancements in secondary raw materials (SRMs) management, showcasing two years of research on how urban mining and anthropogenic resources can strengthen supply chains. Experts will discuss how the latest Urban Mine Platform updates can support informed decision-making in resource management. 

    With competition for minerals intensifying, EGRM-16 will play a role in shaping policies that secure resources responsibly while advancing long-term sustainability goals. 

    Two Decades of Advancing Mine Safety, Methane Management, and Just Transition 

    As pressure mounts to curb methane emissions and phase out coal, UNECE’s Group of Experts on Coal Mine Methane and Just Transition will mark its 20th session (24–25 March 2025) by unveiling new tools for methane abatement and discussing ways to integrate emission reductions into national climate targets (NDCs). With mine closures accelerating, experts will present business models from Poland and Spain that repurpose sites for clean energy. Just transition strategies in Tajikistan and Uzbekistan will also highlight efforts to support coal-dependent communities. The session underscores the growing urgency to align mine safety, environmental goals, and economic resilience in the energy transition. 

    UNECE to Tackle Gas Sector’s Role in Energy Security and Climate Action

    The 12th Session of the UNECE Group of Experts on Gas (GEG-12) will address the future of gas in a rapidly evolving landscape. Discussions will focus on biogases as alternatives to fossil fuels, hydrogen infrastructure, and resilience amid supply shocks. For the first time, Just Transition in the gas sector will be explored, alongside new methane reduction measures 

    Driving Partnerships for a Just and Sustainable Energy Transition 

    The UNECE Resource Management Week 2025 will also highlight collaborations with the European Commission, World Bank, and UNDP on methane reduction and hydrogen projects, as well as partnerships with the UN Country Teams and the Issue-Based Coalition on Environment and Climate Change to shape coherent just transition policies. With a focus on practical solutions and innovation, the event aims to accelerate the energy transition in a fair, inclusive, and sustainable way. 

    MIL OSI United Nations News

  • MIL-OSI Video: UN Deputy Chief – SEforALL Global Forum 2025 | United Nations

    Source: United Nations (Video News)

    Video remarks by Amina J. Mohammed, Deputy Secretary-General of the United Nations, on the occasion of the SEforALL Global Forum 2025 “Sustainable Energy for Equity, Security and Prosperity”, 12 March 2025.

    https://www.youtube.com/watch?v=ki2JBzcoLWg

    MIL OSI Video

  • MIL-OSI Europe: Answer to a written question – Withdrawal of energy companies from offshore wind projects – E-002909/2024(ASW)

    Source: European Parliament

    While it is not for the Commission to comment on the commercial decisions of companies to invest or abstain from investing in individual projects, closely monitoring the offshore wind sector is a priority to achieve energy objectives.

    The offshore wind investment market is mature and competitive. Nevertheless, the offshore wind industry has recently rising costs driven by inflation, higher interest rates, and supply chain bottlenecks, creating financial pressure for developers.

    In response, the Commission launched the European Wind Power Package[1] in October 2023 to accelerate permitting, improve access to finance, strengthen grid infrastructure, and scale up supply chains.

    These efforts are yielding results: over 20 GW of offshore wind is now installed in EU waters, with many new auctions and projects ahead. Economic conditions are also easing, with declining inflation and interest rates.

    The Commission continues to work with Member States and stakeholders to accelerate deployment. To limit public funding risks, a key focus is efficient planning and fair cost and benefit sharing solutions for offshore grids investments, typically financed via network tariffs.

    In June 2024, the Commission published guidance on collaborative investment frameworks for offshore projects[2], supporting tailored mechanisms and dedicated regional approaches.

    Further discussions and engagement with Member States are ongoing. In 2025, the Commissioner for Energy and Housing will present the Clean Energy Investment Plan.

    On 18 December 2024, Member States reaffirmed offshore wind’s role in EU’s energy security and transition, updating regional goals to 88 GW by 2030 and 360 GW by 2050, providing visibility and support to the sector.

    • [1] https://ec.europa.eu/commission/presscorner/detail/en/ip_23_5185
    • [2] https://energy.ec.europa.eu/publications/guidance-collaborative-investment-frameworks-offshore-energy-projects_en

    MIL OSI Europe News

  • MIL-OSI Asia-Pac: 2025 Feed-in Tariffs (FIT) Rates for Renewable Energy Officially Announced

    Source: Republic Of China Taiwan 2

    The Ministry of Economic Affairs (MOEA) has finalized the “R.O.C. 2025 Renewable Energy Feed-in Tariffs (FIT) and Calculation Formulas”, confirming that the official rates remain unchanged from the initial draft, and continues to offer incentives for diverse renewable installations through tariff levels and various subsidies and supporting mechanisms to encourage further expansions. Compared to 2024, the FIT rate for rooftop solar PV installations ranging from 1kW to under 10kW remains the same as the second phase of 2024, while other categories have undergone slight reductions. Furthermore, a new capacity range of 1-100kW has been added for small hydropower to reflect cost differences based on scale. Meanwhile, all existing incentives and supporting mechanisms remain unchanged.

    The key points of the officially announced 2025 Feed-in Tariffs (FIT) Rates for Renewable Energy (see details in the attachment) are as follows (same as draft):
    1. Solar PV: Two-phase rates are adopted. The FIT rate for the first phase (first half of the year) ranges from NT$ 3.5337 to NT$ 5.7055 per kWh, while the second phase (second half of the year) ranges from NT$ 3.5037 to NT$ 5.6279 per kWh.

    2. Wind Power: Rates remain unchanged. The FIT rate for onshore wind farms with capacities under 30kW is NT$ 7.4110 per kWh, while onshore wind farms with capacities of 30kW and above are at NT$ 2.1286 per kWh. Offshore wind power maintains a FIT rate of NT$ 4.5085 per kWh.

    3. Biomass Energy: Rates remain unchanged. The FIT rate for biogas (with anaerobic digestion facilities) is NT$ 7.0192 per kWh. The rate for the solid biofuels and domestic agricultural residues resources is NT$ 5.1407 per kWh, and NT$ 2.8066 per kWH for other biomass categories.

    4. Waste to Energy: The FIT rates for energy generated from general and general industrial wastes category remain unchanged at NT$ 3.9482 per kWh.

    5. Small Hydropower: The FIT rates for 1-100kW capacity category is NT$ 4.9548 per kWh. The rates for other capacity ranges (100kW-500kW, 500kW-2MW, and 2MW-20MW) remain unchanged at NT$ 4.8936 per kWh, NT$ 4.2285 per kWh, and NT$ 2.8599 per kWh respectively.

    6. Geothermal Power: The FIT rates remain unchanged. Facilities with capacities under 2MW will have a FIT rate of NT$ 5.9459 per kWh, while those above 2MW will have a FIT rate of NT$ 5.1956 per kWh.

    7. Marine Energy: The FIT rate remains at NT$ 7.3200 per kWh, the same as in 2024.

    During the public consultation period, stakeholders expressed concerns over solar FIT reductions, refined capacity ranges for small hydropower, higher FIT rates, and more detailed categories for marine energy and creating floating offshore wind FIT category. However, after careful review based on the principles of FIT, the committee decided to uphold the original proposal while committing to ongoing evaluations for potential adjustments.

    The MOEA emphasized that the 2025 FIT review process followed a fair, transparent, and rigorous procedure to ensure that the tariffs aligned with Taiwan’s development environment., The government remains committed to continuously evaluating FIT-related policies to build a solid foundation for Taiwan’s renewable energy development.

    Spokesperson for Energy Administration, Ministry of Economic Affairs: Deputy Director-General, Chih-Wei Wu
    Phone: 02-2775-7750
    Mobile: 0922-339-410
    Email: cwwu@moeaea.gov.tw

    Business Contact (Solar PV, Biomass Energy, Waste to Energy, Small Hydropower): Deputy Director, Shih-Wei Liao
    Phone: 02-2775-7620
    Mobile: 0920-091-081
    Email: swliau@moeaea.gov.tw

    Business Contact (Wind Power, Marine Energy): Director, Chung-Hsien Chen
    Phone: 02-2775-7770
    Mobile: 0919-998-339
    Email: ctchen2@moeaea.gov.tw

    Business Contact (Geothermal Power): Director, Hsiu-Fen Tsai
    Phone: 02-2775-7730
    Mobile: 0905-506-258
    Email: hftsai@moeaea.gov.tw

    MIL OSI Asia Pacific News

  • MIL-OSI USA: Trump Touts Alaska LNG as a Top Priority of New Administration

    US Senate News:

    Source: United States Senator for Alaska Dan Sullivan
    03.05.25
    WASHINGTON—U.S. Senator Dan Sullivan (R-Alaska) today celebrated President Donald Trump’s endorsement of the Alaska Liquefied Natural Gas (LNG) Project as a top priority of his new administration in the President’s joint address to Congress last night.
    Sen. Sullivan has been a relentless advocate for the Alaska LNG Project as an opportunity to provide abundant, clean-burning, low-cost energy to Alaskans, promote American energy security, and deepen America’s alliances with its Indo-Pacific partners, particularly Japan and South Korea. Following Russia’s invasion of Ukraine, Sen. Sullivan has taken four trips to Japan and South Korea to promote the project, talking to numerous potential investors and the senior-most government and private sector officials in each country. More recently, he has spoken directly with President Trump on several occasions about the project and gave him the comprehensive document called, “America’s Gasline.” The senator has also had extensive conversations with nearly all of President Trump’s cabinet officials about the Alaska LNG Project, garnering their support.
    “My administration is also working on a gigantic natural gas pipeline in Alaska, among the largest in the world, where Japan, South Korea and other nations want to be our partner with investments of trillions of dollars each,” President Trump said. “There’s never been anything like that one. It will be truly spectacular. It’s all set to go. The permitting is gotten.”
    [embedded content]
    “The fact that the President of the United States was highlighting the Alaska LNG Project as one of the biggest things he wants to get done for America was huge for our state and huge for our country,” Sullivan said in an interview following the address. “It’s not going to happen overnight, but the fact that we have the President and his entire cabinet fully putting their shoulder into this was quite remarkable…Governor Dunleavy and I pitched the Trump administration on having the President mention this in his State of the Union…I hope a lot of Alaskans saw that we have been working this really hard, because we have a great opportunity—the private sector elements of this are coming together, the foreign government elements of this giant project are coming together. But when you get the President and his entire cabinet saying, we’re going to get this done, and he tells the American people that, I don’t think that’s ever happened before for Alaska…It was a big night for us, and I’m really excited.”
    The Alaska LNG Project will be capable of providing more than three billion cubic feet of low-cost, low-emission natural gas to Alaskans, Americans, and to allied nations around the world each day. It is also projected to create up to 10,000 construction and 1,000 operations jobs.
    Below is a timeline of Sen. Sullivan’s recent work on advancing the Alaska LNG Project and deepening the energy security ties between the U.S. and America’s Japanese and Korean allies.
    On February 24, 2025, Sen. Sullivan had an Alaska LNG focused meeting with Interior Secretary Doug Burgum at the Department of the Interior.
    On February 7, 2025, President Trump announced a “joint venture” on Alaska oil and gas between the United States and Japan.
    On January 8, 2025, Sen. Sullivan personally pitched President Trump on the Alaska LNG Project.
    On December 17, 2024, Sen. Sullivan focused on the Alaska LNG Project in his meeting with now-Secretary of Energy Chris Wright.
    In August of 2024, Sen. Sullivan participated in a bipartisan Senate delegation visit to Japan and South Korea, and discussed the Alaska LNG Project with numerous senior government and business leaders in both countries.
    In February 2024, Sen. Sullivan and seven of his Senate colleagues introduced a Senate resolution recognizing the importance of trilateral cooperation among the United States, Japan, and South Korea.
    On October 8, 2023, Sen. Sullivan penned an op-ed in the Anchorage Daily News urging Alaskans to unite in advancing the Alaska LNG Project as a critical solution to Alaska’s energy needs.
    In June 2023, Sen. Sullivan visited South Korea and Japan, where he met with senior government and private sector officials about the Alaska LNG Project. Similar to his October 2022 visit to Tokyo, Sen. Sullivan convened an Alaska LNG Summit of U.S. and Korean energy and policy leaders with the U.S. Embassy in Seoul. Following the visit, the U.S. Embassy in Seoul established an Alaska LNG Task Force.
    On May 18, 2023, Sen. Sullivan introduced the Indo-Pacific Strategic Energy Initiative Act, legislation to promote the financing and development of new energy infrastructure projects in the Indo-Pacific region—with a focus on natural gas—in order to end U.S. allies’ dependance on Russian natural gas in the wake of Russia’s invasion of Ukraine.
    In May 2023, Sen. Sullivan spoke at the Alaska Sustainable Energy Conference about the Alaska LNG Project and opportunities to deliver clean-burning, low-cost gas to Alaskans and to America’s Indo-Pacific allies.
    In May 2023, Sen. Sullivan, Sen. Lisa Murkowski (R-Alaska), and Rep. Mary Peltola (D-Alaska) welcomed a ruling from the U.S. Court of Appeals for the D.C. Circuit upholding the Federal Energy Regulatory Commission’s (FERC) approval of the Alaska LNG Project.
    On March 6, 2023, Sen. Sullivan led a letter with his Senate colleagues to U.S. Ambassador to Japan Rahm Emanuel urging the Biden administration to publicly support the export of abundant U.S. natural gas to America’s allies in Europe and Asia, particularly Japan, which has prioritized energy security in its term leading the G7.
    On December 16, 2022, Sen. Sullivan welcomed a new national security strategy and related documents released by Japanese Prime Minister Fumio Kishida that focuses on deepening Japan and the U.S.’s national security cooperation.
    In October 2022, Sen. Sullivan visited Japan and South Korea to advocate for the Alaska LNG Project. In Tokyo, Sen. Sullivan and Ambassador Emanuel convened an Alaska LNG Summit of U.S. and Japanese energy and policy leaders. Prior to the summit, the U.S. Embassy in Tokyo established an Alaska LNG Task Force.
    In June 2022, Sen. Sullivan and Gov. Mike Dunleavy (R-Alaska) visited Japan to meet with Japanese companies, utilities, and government ministries about the Alaska LNG Project.
    In August 2021, Sens. Murkowski and Sullivan secured a provision in the Infrastructure Investment and Jobs Act making the Alaska LNG Project eligible for a federal loan guarantee of roughly $30 billion that is indexed to inflation.
    In August 2020, the Department of Energy (DOE) issued a final, unconditional order authorizing the Alaska LNG Project to export LNG.
    In May 2020, FERC granted the Alaska Gasline Development Corporation (AGDC) authorization to construct and operate the Alaska LNG Project.
    Between 2014 and 2022, the Alaska LNG Project secured all of its necessary federal permits and authorizations.

    MIL OSI USA News

  • MIL-OSI: Next Hydrogen Solutions Inc. Announces Changes to its Board of Directors

    Source: GlobeNewswire (MIL-OSI)

    MISSISSAUGA, Ontario, March 03, 2025 (GLOBE NEWSWIRE) — Next Hydrogen Solutions Inc. (TSXV: NXH, OTC: NXHSF) (“Next Hydrogen” or the “Company”), announced today the appointment of Adarsh Mehta to the Company’s board of directors (the “Board”). Ms. Mehta will fill the vacancy on the Board resulting from the resignation of Mr. Matthew Fairlie, who resigned from the Board effective January 15, 2025.

    Ms. Mehta is VP of Business Development for Jenner Renewable Consulting. For the past 22 years Ms. Mehta has played a pivotal role in the growth of renewable energy, leading technical reviews, due diligence, and development for over 2,500 megawatts of wind and solar energy projects across North and South America. She served on the Board of Directors of the Canadian Wind Energy Association (CanWEA) from 2008 to 2015, becoming Chairperson in 2011, where she was instrumental in advancing Canada’s wind energy sector.

    “As Next Hydrogen accelerates its position as a large-scale green hydrogen solution provider, we are excited to welcome Adarsh to our board,” said Allan MacKensie, Chairperson of Next Hydrogen. “Her extensive experience in renewable energy, project development, and industry advocacy will be invaluable as we scale our technology and commercialization efforts.”

    “I am thrilled to join Next Hydrogen at such a transformative time,” said Adarsh Mehta. “Green hydrogen is a critical pillar in the global transition to clean energy, and Next Hydrogen is well-positioned to be a leader in this space. I look forward to contributing to the company’s growth and impact.”

    About Next Hydrogen

    Founded in 2007, Next Hydrogen is a designer and manufacturer of electrolyzers that use water and electricity as inputs to generate clean hydrogen for use as an energy source. Next Hydrogen’s unique cell design architecture supported by 40 patents enables high current density operations and superior dynamic response to efficiently convert intermittent renewable electricity into green hydrogen on an infrastructure scale. Following successful pilots, Next Hydrogen is scaling up its technology to deliver commercial solutions to decarbonize transportation and industrial sectors.

    Contact Information

    Raveel Afzaal, President and Chief Executive Officer
    Next Hydrogen Solutions Inc.
    Email: rafzaal@nexthydrogen.com
    Phone: 647-961-6620

    www.nexthydrogen.com

    Neither the TSXV nor its Regulation Services Provider (as that term is defined in the policies of the TSXV) accepts responsibility for the adequacy or accuracy of this release.

    Notice regarding forward-looking statements:

    Certain statements in this press release constitute forward-looking statements within the meaning of applicable securities laws. Forward-looking statements are frequently characterized by words such as “plan”, “continue”, “expect”, “project”, “intend”, “believe”, “anticipate”, “estimate”, “may”, “will”, “potential”, “proposed” and other similar words, or statements that certain events or conditions “may” or “will” occur. Forward-looking statements in this press release are based on the current expectations of management of Next Hydrogen. Actual events and conditions could differ materially from those expressed or implied in this press release as a result of known and unknown risk factors and uncertainties affecting Next Hydrogen, including risks regarding the industry in which Next Hydrogen operates, economic factors, the equity markets generally and risks associated with growth and competition. Additional risk factors are also set forth in the Company’s management’s discussion and analysis and other filings available via the System for Electronic Document Analysis and Retrieval (SEDAR Plus) under Next Hydrogen’s profile at www.sedarplus.ca. Although the Company has attempted to identify certain factors that could cause actual actions, events or results to differ materially from those described in forward-looking statements, there may be other factors that cause actions, events or results to differ from those anticipated, estimated or intended. No forward-looking statement can be taken as guaranteed. The forward-looking information contained in this press release is made as of the date hereof and the Company is not obligated to update or revise any forward-looking information, whether as a result of new information, future events or otherwise, except as required by applicable securities laws. Because of the risks, uncertainties and assumptions contained herein, readers should not place any undue reliance on forward looking information.

    The MIL Network

  • MIL-OSI Asia-Pac: Leaders’ Statement: Visit of Ms. Ursula von der Leyen, President of the European Commission and EU College of Commissioners to India (February 27-28, 2025)

    Source: Government of India (2)

    Posted On: 28 FEB 2025 6:05PM by PIB Delhi

    Prime Minister Shri Narendra Modi and President of the European Commission Ms. Ursula von der Leyen affirmed that the EU-India Strategic Partnership has delivered strong benefits for their peoples and for the larger global good. They committed to raise this partnership to a higher-level, building upon 20 years of India-EU Strategic Partnership and over 30 years of India-EC Cooperation Agreement.

    President von der Leyen was on her landmark official visit as she led the European Union College of Commissioners to India on 27-28 February 2025. This is the first visit of the College of Commissioners outside the European continent since the start of their new mandate and also the first such visit in the history of India-EU bilateral ties.

    As the two largest democracies and open market economies with diverse pluralistic societies, India and EU underscored their commitment and shared interest in shaping a resilient multipolar global order that underpins peace and stability, economic growth and sustainable development.

    The leaders agreed that shared values and principles including democracy, rule of law, and the rules-based international order in line with the purposes and principles of the UN Charter make India and the EU like-minded and trusted partners. The India-EU Strategic partnership is needed now, more than ever, to jointly address global issues, foster stability, and promote mutual prosperity.

    In this context, they stressed the importance of intensifying cooperation between India and Europe in trade and de-risking of supply chains, investment, emerging critical technologies, innovation, talent, digital and green industrial transition, space and geospatial sectors, defence and people-to-people contacts. They also highlighted the need to cooperate on tackling common global challenges, including climate change, the governance of Artificial Intelligence, development finance, and terrorism in an interdependent world.

    The two leaders welcomed the progress made by the second ministerial meeting of the India-EU Trade and Technology Council (TTC) that took place during the visit in fostering deeper collaboration and strategic co-ordination at the intersection of trade, trusted technology, and green transition.

    They also welcomed the specific outcomes emerging from deliberations conducted between the EU College of Commissioners and their Indian counterpart Ministers.

    The leaders committed to as follows:

    i. Task their respective negotiating teams to pursue negotiations for a balanced, ambitious, and mutually beneficial FTA with the aim of concluding them within the course of the year, recognizing the centrality and importance of growing India EU trade and economic relations. The leaders asked the officials to work as trusted partners to enhance market access and remove trade barriers. They also tasked them to advance negotiations on an Agreement on Investment Protection and an Agreement on Geographical Indications.

    ii. Direct the India-EU Trade and Technology Council to further deepen its engagement to shape outcome-oriented cooperation in areas of economic security and supply chain resilience, market access and barriers to trade, strengthening of semiconductor ecosystems, trustworthy and sustainable Artificial Intelligence, high-performance computing, 6G, Digital Public Infrastructure, joint research and innovation for green and clean energy technologies with a focus on trusted partnerships and industry linkages across these sectors, including the recycling of batteries for electric vehicles (EVs), marine plastic litter, and waste to green/renewable hydrogen. In this context, they welcomed the progress in the implementation of MoU on semiconductors for boosting the semiconductor supply chains, leveraging complementary strengths, facilitating talent exchanges and fostering semiconductor skills among students and young professionals; as well as the signing of MoU between Bharat 6G alliance and the EU 6G Smart Networks and Services Industry Association for creating secured and trusted telecommunications and resilient supply chains.

    iii. Further expand and deepen cooperation under India-EU partnerships in areas of connectivity, clean energy and climate, water, smart and sustainable urbanization, and disaster management as well as work to intensify cooperation in specific areas such as clean hydrogen, offshore wind, solar energy, sustainable urban mobility, aviation, and railways. In this context, they welcomed the agreement on holding an India-EU Green Hydrogen Forum and the India-EU Business Summit on Offshore Wind Energy.

    iv. Develop new specific areas of co-operation identified during the bilateral discussions between the EU Commissioners and Indian Ministers to be reflected in the future joint Strategic Agenda to drive mutual progress.

    v. Undertake concrete steps for the realization of the India-Middle East-Europe Economic Corridor (IMEC) announced during the G20 Leaders’ Summit in New Delhi, deepen their cooperation in the framework of the International Solar Alliance (ISA), the Coalition for Disaster Resilient Infrastructure (CDRI), Leadership Group for Industry Transition (LeadIT 2.0), and Global Biofuels Alliance.

    vi. Strengthen people-to-people ties especially in the areas of higher education, research, tourism, culture, sports, and between their youths, and create an enabling environment for enhancing such exchanges. Also to promote legal, safe and orderly migration in areas of skilled workforce and professionals in view of India’s growing human capital and taking into account EU member states’ demographic profile and labour market needs.

    The leaders reaffirmed their commitment to promote a free, open, peaceful and prosperous Indo-Pacific built on international law and mutual respect for sovereignty and peaceful resolution of disputes underpinned by effective regional institutions. India welcomed the EU joining the Indo-Pacific Oceans Initiative (IPOI). Both sides also committed to explore trilateral co-operation including in Africa and the Indo-Pacific.

    The two leaders expressed satisfaction at growing cooperation in the defence and security domain, including joint exercises and collaboration between Indian Navy and EU Maritime security entities. The EU side welcomed India’s interest in joining the projects under the EU’s Permanent Structured Cooperation (PESCO) as well as to engage in negotiations for a Security of Information Agreement (SoIA). The leaders also committed to explore a security and defence partnership. They reiterated their commitment to international peace and security, including maritime security by tackling traditional and non-traditional threats to safeguard trade & sea lanes of communication. They emphasised the need to deepen collaboration in counter terrorism and to strengthen international cooperation to combat terrorism, including cross-border terrorism and terrorism financing in a comprehensive and sustained manner.

    The two leaders also discussed key international and regional issues, including on the situation in the Middle-East and the war in Ukraine. They expressed support for a just and lasting peace in Ukraine based on respect for international law, principles of the UN charter and territorial integrity and sovereignty. They also reiterated their commitment to the vision of the two-State solution with Israel and Palestine living side by side in peace and security within recognized borders, consistent with international law.

    The Leaders recognized the productive and forward-looking nature of the discussions and agreed on the following concrete steps:

    (i) Expedite the conclusion of the FTA by the end of the year.

    (ii) Further focused discussions on defence industry and policy to explore opportunities from new initiatives and programmes.

    (iii) A review meeting with partners to take stock on the IMEC initiative.

    (iv) Engage on maritime domain awareness with a view to promoting shared assessment, coordination and interoperability.

    (v) Convene the next meeting of the TTC at an early date to deepen cooperation in semiconductors and other critical technologies.

    (vi) Enhance the dialogue on clean and green energy between governments and industry, with a focus on green hydrogen.

    (vii) Strengthening collaboration in the Indo-Pacific including through trilateral cooperation projects.

    (viii) Strengthen cooperation on Disaster Management through the development of appropriate arrangements including on policy and technical level engagement for preparedness, response capacities and coordination.

    Both leaders expressed confidence that this momentous visit will mark the beginning of a new chapter in the history of relations and reaffirmed their commitment to further expand and deepen the India-EU Strategic Partnership. They looked forward to the next India EU Summit being organized in India at the earliest mutually convenient time and to the adoption of a new joint Strategic Agenda on that occasion. President von der Leyen thanked Prime Minister Modi for his warm hospitality.

    *****

    MJPS/ST

    (Release ID: 2107015) Visitor Counter : 10

    MIL OSI Asia Pacific News

  • MIL-OSI Asia-Pac: English translation of Press Statement by Prime Minister Shri Narendra Modi during the Joint Press Conference with President of European Commission (February 28, 2025)

    Source: Government of India (2)

    Posted On: 28 FEB 2025 3:04PM by PIB Delhi

    Your Excellency, President of the European Commission,

    European College of Commissioners,

    Delegates,

    Friends from the media,

    Namaskar!

    This visit of the President of the European Commission and the College of Commissioners to India is unprecedented.

    This isn’t just the European Commission’s first visit to India, but also the first such comprehensive engagement of the European Commission in any single country. Also, this is one of the first visits of the new Commission in its latest term. On this historic occasion, I warmly welcome the President of the European Commission and the College of Commissioners to India.

    Friends,

    This two-decade long strategic partnership between India and EU is natural and organic. Its core is built on trust, a shared belief in democratic values, and a mutual commitment to prosperity and shared progress.

    In this spirit, we have held almost 20 ministerial level meetings of different sectors between yesterday and today. Sincere and meaningful discussions were held on various regional and global matters. Many important decisions have been taken to elevate and accelerate our partnership.

    We have prepared a blueprint for collaboration in the areas of Trade, Technology, Investment, Innovation, Green Growth, Security, Skilling and Mobility. We have directed our teams to conclude a mutually beneficial Bilateral Free Trade Agreement by the end of this year.

    Friends,

    To strengthen the investment framework, there has also been talk of moving forward on Investment Protection and GI Agreement. In the field of Technology and Innovation, a trusted and secure value chain is our common priority.

    We have also agreed on increasing cooperation in semiconductors, AI, high performance computing and 6G. We have also decided to initiate a Space Dialogue.

    Friends,

    A balance between Ecology and Economy has been our shared commitment, and our cooperation in this direction has been strong. We have decided to conduct a Green Hydrogen Forum and Offshore Wind Energy Business Summit. Joint research shall be undertaken on EV Batteries, Marine plastics and Green hydrogen. We shall also take forward our Joint Plan on Sustainable Urban Development.

    In the field of connectivity, concrete steps will be taken, to take forward the India – Middle East – Europe Economic Corridor or “IMEEC”. I firmly believe that “IMEEC” shall serve as an engine that drives global commerce, sustainable growth and prosperity in the days to come.

    Friends,

    Our growing cooperation on issues related to Defence and Security, is a symbol of our mutual trust. We will take forward our cooperation on Cyber Security, Maritime Security and Counter Terrorism.

    Both sides agree on the importance of peace, security, stability and prosperity in the Indo-Pacific region. We welcome the decision of the EU to join the “Indo Pacific Oceans Initiative”. We will work together on Triangular Development projects for sustainable and inclusive development in the Indo-Pacific region and Africa.

    Friends,

    People-to-people connect is the strongest asset of our relationship. Today, we have reached a new agreement to increase academia, research and industry partnerships between us. I believe that India’s young talent and Europe’s innovation can together create limitless possibilities.

    We welcome the new visa cascade regime of the EU. This will provide better mobility to the abilities of India’s talented youth.

    Today, we have decided to create a bold and ambitious roadmap for the India-EU partnership for the period beyond 2025. It will be launched during the next India-EU Summit.

    Excellency,

    Your visit to India has given new momentum, energy and enthusiasm to our partnership. This journey is the biggest catalyst that will translate our ambition into action.

    I eagerly look forward to the opportunity of welcoming you back to India for the next India-EU Summit.

    Thank you very much.

    ******

    MJPS/ST/SKS

    (Release ID: 2106908) Visitor Counter : 106

    MIL OSI Asia Pacific News

  • MIL-OSI: Sunrun Reports Fourth Quarter and Full Year 2024 Financial Results

    Source: GlobeNewswire (MIL-OSI)

    Cash Generation of $34 million in Q4 after safe harbor equipment purchases, third consecutive quarter of positive Cash Generation

    Paid down $132 million of recourse debt in Q4 with excess cash

    Cash Generation guidance of $200 million to $500 million in 2025

    Cash Generation guidance of $40 to $50 million in Q1

    Net Earning Assets increased to $6.8 billion, including $947 million of Total Cash

    Storage Capacity Installed of 392 Megawatt hours in Q4, exceeding high-end of guidance range and representing 78% year-over-year growth, as storage attachment rates reach 62%

    Solar Energy Capacity Installed of 242 Megawatts in Q4, within the guidance range, reaching 7.5 Gigawatts of Networked Solar Energy Capacity

    SAN FRANCISCO, Feb. 27, 2025 (GLOBE NEWSWIRE) — Sunrun (Nasdaq: RUN), the nation’s leading provider of clean energy as a subscription service, today announced financial results for the fourth quarter and full year ended December 31, 2024.

    “We are growing, generating meaningful cash, increasing our book value of deployed systems, and paying down debt. We are poised to further improve our operating and financial results, and deliver a very strong 2025 with meaningful Cash Generation. Our actions to optimize our product mix, prioritize the highest value geographies and routes to market and an intense focus on cost as we grow have resulted in the highest Net Subscriber Values Sunrun has ever reported,” said Mary Powell, Sunrun’s Chief Executive Officer. “We are improving in every dimension we control – focusing on fast, effective execution, delivering strong financial and operating results, gaining share in a disciplined way, while building a long-term foundation of valuable grid resources.”

    “In the fourth quarter, we again set new margin records and delivered the third consecutive quarter of Cash Generation. We continue to execute well in the capital markets, raising more than $4 billion in asset-level debt and tax equity financing during 2024, and more than $800 million in non-recourse debt financing year-to-date. We have extended our runway of tax equity commitments and term sheets, including $1.3 billion added year-to-date,” said Danny Abajian, Sunrun’s Chief Financial Officer. “We have a strong balance sheet with no near-term corporate debt maturities and have paid down recourse parent debt by $186 million since March, including a $132 million paydown using excess cash in Q4. As we increase our Cash Generation, we will continue to further pay down parent recourse debt and are committed to a capital allocation strategy beyond this initial de-leveraging period that drives significant shareholder value.”

    Fourth Quarter Updates

    • Storage Attachment Rates Reach 62%: Customer Additions with storage grew more than 50% during the quarter compared to the prior-year period. Storage attachment rates on installations reached 62% in Q4, up from 45% in the prior-year period, with 392 Megawatt hours installed during the quarter. Sunrun has installed more than 156,000 solar and storage systems, representing over 2.5 Gigawatt hours of stored energy capacity.
    • Continued Strong Capital Markets Execution: In January 2025, Sunrun priced a $629 million securitization of residential solar and battery systems. The securitization is Sunrun’s thirteenth securitization since 2015 and first issuance in 2025. The oversubscribed transaction was structured with three separate classes of A rated notes, only two of which were publicly offered. The weighted average spread of the notes was 197 basis points, which was an improvement of approximately 38 basis points from our prior securitization in September. Similar to prior transactions, Sunrun raised additional capital in a subordinated non-recourse financing, which increased the cumulative advance rate to above 80% as measured against the initial Contracted Subscriber Value of the portfolio.
    • Paying Down Recourse Debt: We continue to pay down parent recourse debt. During the fourth quarter, we repurchased $125.5 million in principal of our 2026 Convertible Notes. As of December 31, 2024 we had only $7.7 million outstanding of these notes, which we may repurchase in 2025. Since March 31, 2024 we have paid down recourse debt by $186 million, by repurchasing our 2026 Convertible Notes and reducing borrowings under our recourse Working Capital Facility. We have also increased our Total Cash balance by $164 million and grown Net Earning Assets by $1.5 billion. We expect to further pay down our recourse debt in 2025 by $100 million or more. Aside from the $7.7 million outstanding of our 2026 Convertible Notes, we have no recourse debt maturities until March 2027. Over time we will explore further capital allocation options to maximize shareholder value, based on market conditions and our long-term outlook.
    • Improving Grid Stability with Virtual Power Plants: During 2024, Sunrun’s virtual power plants (VPPs) successfully supported power grids across the country with a combined instantaneous peak of nearly 80 megawatts—a capacity greater than many traditional fossil-fuel power plants. These innovative programs leveraged Sunrun’s fleet of residential solar and battery systems—the largest in America—empowering customers to generate, store, and share their own solar energy. In 2024, more than 20,000 Sunrun customers participated in 16 virtual power plant programs across nine states and territories. From California and Texas to Puerto Rico and New England, the customers’ batteries supplied on-demand, stored solar energy to augment power resources during hundreds of critical energy events.

    Key Operating Metrics

    In the fourth quarter of 2024, Customer Additions were 32,932 including 30,709 Subscriber Additions. As of December 31, 2024, Sunrun had 1,048,842 Customers, including 889,186 Subscribers. Customers grew 12% in the fourth quarter of 2024 compared to the fourth quarter of 2023.

    Annual Recurring Revenue from Subscribers was approximately $1.6 billion as of December 31, 2024. The Average Contract Life Remaining of Subscribers was 17.6 years as of December 31, 2024.

    Subscriber Value was $55,811 in the fourth quarter of 2024, a 11% increase compared to the fourth quarter of 2023. Creation Cost was $36,634 in the fourth quarter of 2024, a 1% decrease compared to the fourth quarter of 2023.

    Net Subscriber Value was $19,177 in the fourth quarter of 2024. Total Value Generated was $589 million in the fourth quarter of 2024. On a pro-forma basis assuming a 7.3% discount rate, consistent with capital costs observed in the quarter, Subscriber Value was $50,998 and Net Subscriber Value was $14,364 in the fourth quarter of 2024.

    Gross Earning Assets as of December 31, 2024, were $17.8 billion. Net Earning Assets were $6.8 billion, which included $947 million in Total Cash, as of December 31, 2024.

    Cash Generation was $34.2 million in the fourth quarter of 2024, the third consecutive quarter of positive Cash Generation.

    Storage Capacity Installed was 392.0 Megawatt hours in the fourth quarter of 2024, a 78% increase compared to the fourth quarter of 2023.

    Solar Energy Capacity Installed was 242.4 Megawatts in the fourth quarter of 2024, a 7% increase compared to the fourth quarter of 2023. Included in this figure is 232.0 Megawatts of Solar Energy Capacity Installed for Subscribers in the fourth quarter of 2024, an 11% increase compared to the fourth quarter of 2023.

    Networked Solar Energy Capacity was 7,531 Megawatts as of December 31, 2024. Included in this figure is 6,436 Megawatts of Networked Solar Energy Capacity for Subscribers as of December 31, 2024.

    Networked Storage Capacity was 2.5 Gigawatt hours as of December 31, 2024.

    The solar energy systems we deployed in Q4 are expected to offset the emission of 4.8 million metric tons of CO2 over the next thirty years. Over the last twelve months ended December 31, 2024, Sunrun’s systems are estimated to have offset 4.0 million metric tons of CO2.

    Outlook

    Cash Generation is expected to be in a range of $40 million to $50 million in the first quarter of 2025.

    For the full-year 2025, Cash Generation is expected to be in a range of $200 million to $500 million.

    Storage Capacity Installed is expected to be in a range of 265 to 275 Megawatt hours in the first quarter of 2025, representing approximately 30% growth year over year at the midpoint.

    Solar Energy Capacity Installed is expected to be in a range of 170 to 180 Megawatts in the first quarter of 2025, representing approximately flat year over year growth at the midpoint.

    For the full-year 2025, the Company expects robust growth in Storage Capacity Installed year over year, and Solar Energy Capacity Installed is expected to be approximately flat year over year.

    Fourth Quarter 2024 GAAP Results

    Total revenue was $518.5 million in the fourth quarter of 2024, up $1.9 million, or 0%, from the fourth quarter of 2023. Customer agreements and incentives revenue was $388.6 million, an increase of $67.0 million, or 21%, compared to the fourth quarter of 2023. Solar energy systems and product sales revenue was $129.9 million, a decrease of $65.1 million, or 33%, compared to the fourth quarter of 2023. The increasing mix of Subscribers results in less upfront revenue recognition, as revenue is recognized over the life of the Customer Agreement, which is typically 20 or 25 years.

    Total cost of revenue was $421.0 million, a decrease of 13% year-over-year. Total operating expenses were $652.6 million, a decrease of 9% year-over-year, on a pro-forma basis to exclude a non-cash goodwill impairment, which was incurred in the fourth quarter of 2024.

    Net loss attributable to common stockholders was $2,813.7 million, or $12.51 per basic and diluted share for the fourth quarter of 2024. Pro forma to exclude non-cash impairment charges, results in non-GAAP net income of $360.9 million or $1.41 per diluted share for the fourth quarter of 2024.

    Full Year 2024 GAAP Results

    Total revenue was $2,037.7 million in the full year 2024, down $222.1 million, or 10%, from the full year 2023. Customer agreements and incentives revenue was $1,505.2 million, an increase of $318.5 million, or 27%, compared to the full year 2023. Solar energy systems and product sales revenue was $532.5 million, a decrease of $540.6 million, or 50%, compared to the full year 2023.

    Total cost of revenue was $1,709.2 million, a decrease of 18% year-over-year. Total operating expenses were $2,610.8 million, a decrease of 15% year-over year, on a pro-forma basis to exclude non-cash goodwill impairment, which was incurred in both the full year 2023 and full year 2024.

    During the year, Sunrun recorded a non-cash goodwill impairment charge of approximately $3.1 billion. Due to the decline in our stock price, we wrote down our goodwill balance of $3.1 billion in its entirety during the fourth quarter of 2024. The goodwill primarily arose following the stock-for-stock acquisition of Vivint Solar in October 2020, with the majority arising from and determined based on the market capitalizations at the time of the acquisition. The Company recorded a non-cash goodwill impairment charge of $3.1 billion, or $14.05 per basic share, in our Consolidated Statement of Operations for the full year 2024, which was reflected in the Company’s fourth quarter results.

    Net loss attributable to common stockholders was $2,846.2 million, or $12.81 per basic and diluted share for the full year 2024. Pro-forma to exclude non-cash impairment charges, results in non-GAAP net income of $333.7 million or $1.33 per diluted share for the full-year 2024.

    Financing Activities

    As of February 27, 2025, closed transactions and executed term sheets provide us with expected tax equity to fund over 500 Megawatts of Solar Energy Capacity Installed for Subscribers beyond what was deployed through December 31, 2024. Sunrun also has $680 million in unused commitments available in its non-recourse senior revolving warehouse loan after the January securitization, to fund approximately 230 megawatts of projects for Subscribers.

    Conference Call Information

    Sunrun is hosting a conference call for analysts and investors to discuss its fourth quarter and full year 2024 results and business outlook at 1:30 p.m. Pacific Time today, February 27, 2025. A live audio webcast of the conference call along with supplemental financial information will be accessible via the “Investor Relations” section of Sunrun’s website at https://investors.sunrun.com. The conference call can also be accessed live over the phone by dialing (877) 407-5989 (toll free) or (201) 689-8434 (toll). An audio replay will be available following the call on the Sunrun Investor Relations website for approximately one month.

    About Sunrun

    Sunrun Inc. (Nasdaq: RUN) revolutionized the solar industry in 2007 by removing financial barriers and democratizing access to locally-generated, renewable energy. Today, Sunrun is the nation’s leading provider of clean energy as a subscription service, offering residential solar and storage with no upfront costs. Sunrun’s innovative products and solutions can connect homes to the cleanest energy on earth, providing them with energy security, predictability, and peace of mind. Sunrun also manages energy services that benefit communities, utilities, and the electric grid while enhancing customer value. Discover more at www.sunrun.com

    Non-GAAP Information

    This press release includes references to certain non-GAAP financial measures, such as non-GAAP net (loss) income and non-GAAP net (loss) income per share. We believe that these non-GAAP financial measures, when reviewed in conjunction with GAAP financial measures, can provide meaningful supplemental information for investors regarding the performance of our business and facilitate a meaningful evaluation of current period performance on a comparable basis with prior periods. Our management uses these non-GAAP financial measures in order to have comparable financial results to analyze changes in our underlying business from quarter to quarter. These non-GAAP financial measures should be considered as a supplement to, and not as a substitute for or superior to the GAAP financial measures presented in this press release and our financial statements and other publicly filed reports. Non-GAAP measures as presented herein may not be comparable to similarly titled measures used by other companies.

    Non-GAAP net (loss) income is defined as GAAP net (loss) income adjusted by the non-cash goodwill impairment charge, non-cash adjustment to equity investments, and the debt discount amortization. Management believes the exclusion of this non-cash and non-recurring item provides useful supplemental information to investors and facilitates the analysis of its operating results and comparison of operating results across reporting periods.

    Forward Looking Statements

    This communication contains forward-looking statements related to Sunrun (the “Company”) within the meaning of Section 27A of the Securities Act of 1933, and Section 21E of the Securities Exchange Act of 1934 and the Private Securities Litigation Reform Act of 1995. Such forward-looking statements include, but are not limited to, statements related to: the Company’s financial and operating guidance and expectations; the Company’s business plan, trajectory, expectations, market leadership, competitive advantages, operational and financial results and metrics (and the assumptions related to the calculation of such metrics); the Company’s momentum in its business strategies including expectations regarding market share, total addressable market, growth in certain geographies, customer value proposition, market penetration, growth of certain divisions, financing activities, financing capacity, product mix, and ability to manage cash flow and liquidity; the growth of the solar industry; the Company’s financing activities and expectations to refinance, amend, and/or extend any financing facilities; trends or potential trends within the solar industry, our business, customer base, and market; the Company’s ability to derive value from the anticipated benefits of partnerships, new technologies, and pilot programs, including contract renewal and repowering programs; anticipated demand, market acceptance, and market adoption of the Company’s offerings, including new products, services, and technologies; the Company’s strategy to be a margin-focused, multi-product, customer-oriented company; the ability to increase margins based on a shift in product focus; expectations regarding the growth of home electrification, electric vehicles, virtual power plants, and distributed energy resources; the Company’s ability to manage suppliers, inventory, and workforce; supply chains and regulatory impacts affecting supply chains; the Company’s leadership team and talent development; the legislative and regulatory environment of the solar industry and the potential impacts of proposed, amended, and newly adopted legislation and regulation on the solar industry and our business; the ongoing expectations regarding the Company’s storage and energy services businesses and anticipated emissions reductions due to utilization of the Company’s solar energy systems; and factors outside of the Company’s control such as macroeconomic trends, bank failures, public health emergencies, natural disasters, acts of war, terrorism, geopolitical conflict, or armed conflict / invasion, and the impacts of climate change. These statements are not guarantees of future performance; they reflect the Company’s current views with respect to future events and are based on assumptions and estimates and are subject to known and unknown risks, uncertainties and other factors that may cause actual results, performance or achievements to be materially different from expectations or results projected or implied by forward-looking statements. The risks and uncertainties that could cause the Company’s results to differ materially from those expressed or implied by such forward-looking statements include: the Company’s continued ability to manage costs and compete effectively; the availability of additional financing on acceptable terms; worldwide economic conditions, including slow or negative growth rates and inflation; volatile or rising interest rates; changes in policies and regulations, including net metering, interconnection limits, and fixed fees, or caps and licensing restrictions and the impact of these changes on the solar industry and our business; the Company’s ability to attract and retain the Company’s business partners; supply chain risks and associated costs; realizing the anticipated benefits of past or future investments, partnerships, strategic transactions, or acquisitions, and integrating those acquisitions; the Company’s leadership team and ability to attract and retain key employees; changes in the retail prices of traditional utility generated electricity; the availability of rebates, tax credits and other incentives; the availability of solar panels, batteries, and other components and raw materials; the Company’s business plan and the Company’s ability to effectively manage the Company’s growth and labor constraints; the Company’s ability to meet the covenants in the Company’s investment funds and debt facilities; factors impacting the home electrification and solar industry generally, and such other risks and uncertainties identified in the reports that we file with the U.S. Securities and Exchange Commission from time to time. All forward-looking statements used herein are based on information available to us as of the date hereof, and we assume no obligation to update publicly these forward-looking statements for any reason, except as required by law.

    Citations to industry and market statistics used herein may be found in our Investor Presentation, available via the “Investor Relations” section of Sunrun’s website at https://investors.sunrun.com.

    Consolidated Balance Sheets
    (In Thousands)
        As of December 31,
          2024     2023
    Assets        
    Current assets:        
    Cash   $ 574,956   $ 678,821
    Restricted cash     372,312     308,869
    Accounts receivable, net     170,706     172,001
    Inventories     402,083     459,746
    Prepaid expenses and other current assets     202,579     262,822
    Total current assets     1,722,636     1,882,259
    Restricted cash     148     148
    Solar energy systems, net     15,032,115     13,028,871
    Property and equipment, net     121,239     149,139
    Goodwill         3,122,168
    Other assets     3,021,746     2,267,652
    Total assets   $ 19,897,884   $ 20,450,237
    Liabilities and total equity        
    Current liabilities:        
    Accounts payable   $ 354,214   $ 230,723
    Distributions payable to noncontrolling interests and redeemable noncontrolling interests     41,464     35,180
    Accrued expenses and other liabilities     543,752     499,225
    Deferred revenue, current portion     129,442     128,600
    Deferred grants, current portion     7,900     8,199
    Finance lease obligations, current portion     26,045     22,053
    Non-recourse debt, current portion     231,665     547,870
    Pass-through financing obligation, current portion         16,309
    Total current liabilities     1,334,482     1,488,159
    Deferred revenue, net of current portion     1,208,905     1,067,461
    Deferred grants, net of current portion     196,535     195,724
    Finance lease obligations, net of current portion     66,139     68,753
    Line of credit     384,226     539,502
    Non-recourse debt, net of current portion     11,806,181     9,191,689
    Convertible senior notes     479,420     392,867
    Pass-through financing obligation, net of current portion         278,333
    Other liabilities     119,846     190,866
    Deferred tax liabilities     137,940     122,870
    Total liabilities     15,733,674     13,536,224
    Redeemable noncontrolling interests     624,159     676,177
    Total stockholders’ equity     2,554,207     5,230,228
    Noncontrolling interests     985,844     1,007,608
    Total equity     3,540,051     6,237,836
    Total liabilities, redeemable noncontrolling interests and total equity   $ 19,897,884   $ 20,450,237
    Consolidated Statements of Operations
    (In Thousands, Except Per Share Amounts)

        Three Months Ended
    December 31,
      Year Ended
    December 31,
          2024       2023       2024       2023  
    Revenue:                
    Customer agreements and incentives   $ 388,574     $ 321,555     $ 1,505,227     $ 1,186,706  
    Solar energy systems and product sales     129,918       195,035       532,492       1,073,107  
    Total revenue     518,492       516,590       2,037,719       2,259,813  
    Operating expenses:                
    Cost of customer agreements and incentives     292,632       287,780       1,169,213       1,077,114  
    Cost of solar energy systems and product sales     128,361       194,808       539,952       1,019,638  
    Sales and marketing     150,751       166,760       617,162       740,821  
    Research and development     8,794       7,663       39,304       21,816  
    General and administrative     72,045       57,110       245,127       221,067  
    Goodwill Impairment     3,122,168             3,122,168       1,158,000  
    Total operating expenses     3,774,751       714,121       5,732,926       4,238,456  
    Loss from operations     (3,256,259 )     (197,531 )     (3,695,207 )     (1,978,643 )
    Interest expense, net     (233,385 )     (181,826 )     (848,366 )     (652,989 )
    Other income (expense), net     89,829       (157,644 )     161,539       (63,900 )
    Loss before income taxes     (3,399,815 )     (537,001 )     (4,382,034 )     (2,695,532 )
    Income tax benefit     136       (1,595 )     (26,817 )     (12,691 )
    Net loss     (3,399,951 )     (535,406 )     (4,355,217 )     (2,682,841 )
    Net loss attributable to noncontrolling interests and redeemable noncontrolling interests     (586,294 )     (185,282 )     (1,509,050 )     (1,078,344 )
    Net loss attributable to common stockholders   $ (2,813,657 )   $ (350,124 )   $ (2,846,167 )   $ (1,604,497 )
    Net loss per share attributable to common stockholders                
    Basic   $ (12.51 )   $ (1.60 )   $ (12.81 )   $ (7.41 )
    Diluted   $ (12.51 )   $ (1.60 )   $ (12.81 )   $ (7.41 )
    Weighted average shares used to compute net loss per share attributable to common stockholders                
    Basic     224,896       218,461       222,215       216,642  
    Diluted     224,896       218,461       222,215       216,642  
    Consolidated Statements of Cash Flows
    (In Thousands)

        Three Months Ended December 31,   Year Ended December 31,
          2024       2023       2024       2023  
    Operating activities:                
    Net loss   $ (3,399,951 )   $ (535,406 )   $ (4,355,217 )   $ (2,682,841 )
    Adjustments to reconcile net loss to net cash used in operating activities:                
    Depreciation and amortization, net of amortization of deferred grants     162,343       143,024       620,876       531,669  
    Goodwill impairment     3,122,168             3,122,168       1,158,000  
    Deferred income taxes     136       (1,623 )     (26,817 )     (12,716 )
    Stock-based compensation expense     28,869       27,555       112,825       111,781  
    Interest on pass-through financing obligations           4,862       8,837       19,504  
    Reduction in pass-through financing obligations           (9,820 )     (20,787 )     (40,352 )
    Unrealized (gain) loss on derivatives     (122,319 )     108,226       (120,008 )     28,105  
    Other noncash items     105,220       118,956       210,479       261,390  
    Changes in operating assets and liabilities:                
    Accounts receivable     5,741       5,762       (14,974 )     15,748  
    Inventories     (59,735 )     202,055       57,663       324,158  
    Prepaid expenses and other current assets     (301,380 )     (142,438 )     (771,997 )     (476,628 )
    Accounts payable     141,070       (52,514 )     177,449       (108,785 )
    Accrued expenses and other liabilities     4,182       (31,986 )     80,588       (56,473 )
    Deferred revenue     55,297       47,340       152,762       106,700  
    Net cash used in operating activities     (258,359 )     (116,007 )     (766,153 )     (820,740 )
    Investing activities:                
    Payments for the costs of solar energy systems     (791,785 )     (651,462 )     (2,699,452 )     (2,587,183 )
    Purchase of equity investment           (5,000 )           (5,000 )
    Purchases of property and equipment, net     (627 )     (4,662 )     (1,572 )     (20,960 )
    Net cash provided by (used in) investing activities     (792,412 )     (661,124 )     (2,701,024 )     (2,613,143 )
    Financing activities:                
    Proceeds from state tax credits, net of recapture                 5,203       4,033  
    Proceeds from trade receivable financing     124,261       41,225       124,261       41,225  
    Repayment of trade receivable financing           (41,225 )           (41,225 )
    Proceeds from line of credit     48,700       473,277       354,256       1,124,675  
    Repayment of line of credit     (56,998 )     (451,023 )     (509,532 )     (1,090,331 )
    Proceeds from issuance of convertible senior notes, net of capped call transaction                 444,822        
    Repurchase of convertible senior notes     (117,235 )     (1,545 )     (346,581 )     (1,545 )
    Proceeds from issuance of non-recourse debt     644,950       556,100       4,009,906       3,745,580  
    Repayment of non-recourse debt     (102,748 )     (175,728 )     (1,794,962 )     (1,575,527 )
    Payment of debt fees     (128 )     (412 )     (93,875 )     (47,342 )
    Proceeds from pass-through financing and other obligations, net           2,100       4,795       8,812  
    Repayment of pass-through financing obligation                 (240,288 )      
    Payment of finance lease obligations     (6,605 )     (6,484 )     (27,240 )     (23,279 )
    Contributions received from noncontrolling interests and redeemable noncontrolling interests     521,480       459,858       1,811,966       1,572,399  
    Distributions paid to noncontrolling interests and redeemable noncontrolling interests     (70,269 )     (51,578 )     (308,657 )     (225,114 )
    Acquisition of noncontrolling interest     (4,761 )           (26,195 )     (46,274 )
    Proceeds from transfer of investment tax credits     148,586       6,980       705,697       6,980  
    Payments to redeemable noncontrolling interests and noncontrolling interests of investment tax credits     (148,586 )     (6,980 )     (705,697 )     (6,980 )
    Net proceeds related to stock-based award activities     6,923       8,459       18,876       22,611  
    Net cash provided by financing activities     987,570       813,024       3,426,755       3,468,698  
    Net change in cash and restricted cash     (63,201 )     35,893       (40,422 )     34,815  
    Cash and restricted cash, beginning of period     1,010,617       951,945       987,838       953,023  
    Cash and restricted cash, end of period   $ 947,416     $ 987,838     $ 947,416     $ 987,838  
    Reconciliation between GAAP and Non-GAAP diluted (loss) income per share:

        Three Months Ended
    December 31, 2024
      Year Ended
    December 31, 2024
        Net (Loss)
    Income
      Diluted EPS   Net (Loss)
    Income
      Diluted EPS
    GAAP diluted loss per share   $ (2,813,657 )   $ (12.51 )   $ (2,846,167 )   $ (12.81 )
    Debt Discount Amortization     1,131       0.01       6,438       0.03  
    Non-cash impairment charges (2)     3,173,450       14.11       3,173,450       14.28  
    Non-GAAP diluted income per share (1)   $ 360,924     $ 1.41     $ 333,721     $ 1.33  
                     
    GAAP weighted average shares for diluted EPS     224,896           222,215      
    Non-GAAP weighted average shares for diluted EPS     256,614           250,622      


    (1)
       Non-GAAP diluted income per share excludes the effects of the pro forma adjustment detailed above. Non- GAAP diluted income per share is adjusted to exclude this item, as it is not used by management to evaluate the performance of the business.
    (2)   Excluding this item of non-recurring, infrequent or unusual nature and its impact on the comparability of our results for the period to prior periods and future expected trends.

    Key Operating and Financial Metrics

    The following operating metrics are used by management to evaluate the performance of the business. Management believes these metrics, when taken together with other information contained in our filings with the SEC and within this press release, provide investors with helpful information to determine the economic performance of the business activities in a period that would otherwise not be observable from historic GAAP measures. Management believes that it is helpful to investors to evaluate the present value of cash flows expected from subscribers over the full expected relationship with such subscribers (“Subscriber Value”, more fully defined in the definitions appendix below) in comparison to the costs associated with adding these customers, regardless of whether or not the costs are expensed or capitalized in the period (“Creation Cost”, more fully defined in the definitions appendix below). The Company also believes that Subscriber Value, Creation Costs, and Total Value Generated are useful metrics for investors because they present an unlevered view of all of the costs associated with new customers in a period compared to the expected future cash flows from these customers over a 30-year period, based on contracted pricing terms with its customers, which is not observable in any current or historic GAAP-derived metric. Management believes it is useful for investors to also evaluate the future expected cash flows from all customers that have been deployed through the respective measurement date, less estimated costs to maintain such systems and estimated distributions to tax equity partners in consolidated joint venture partnership flip structures, and distributions to project equity investors (“Gross Earning Assets”, more fully defined in the definitions appendix below). The Company also believes Gross Earning Assets is useful for management and investors because it represents the remaining future expected cash flows from existing customers, which is not a current or historic GAAP-derived measure.

    Various assumptions are made when calculating these metrics. Both Subscriber Value and Gross Earning Assets utilize a 6% rate to discount future cash flows to the present period. Furthermore, these metrics assume that customers renew after the initial contract period at a rate equal to 90% of the rate in effect at the end of the initial contract term. For Customer Agreements with 25-year initial contract terms, a 5-year renewal period is assumed. For a 20-year initial contract term, a 10-year renewal period is assumed. In all instances, we assume a 30-year customer relationship, although the customer may renew for additional years, or purchase the system. Estimated cost of servicing assets has been deducted and is estimated based on the service agreements underlying each fund.

    In-period volume metrics: Three Months Ended
    December 31, 2024
     
    Customer Additions   32,932  
    Subscriber Additions (included within Customer Additions)   30,709  
    Solar Energy Capacity Installed (in Megawatts)   242.4  
    Solar Energy Capacity Installed for Subscribers (in Megawatts)   232.0  
    Storage Capacity Installed (in Megawatt hours)   392.0  
         
    In-period value creation metrics: Three Months Ended
    December 31, 2024
     
    Subscriber Value Contracted Period $52,035  
    Subscriber Value Renewal Period $3,776  
    Subscriber Value $55,811  
    Creation Cost $36,634  
    Net Subscriber Value $19,177  
    Total Value Generated (in millions) $588.9  
         
    In-period environmental impact metrics: Three Months Ended
    December 31, 2024
     
    Positive Environmental Impact from Customers (over trailing twelve months, in millions of metric tons of CO2 avoidance)   4.0  
    Positive Expected Lifetime Environmental Impact from Customer Additions (in millions of metric tons of CO2 avoidance)   4.8  
         
    Period-end metrics: December 31, 2024  
    Customers   1,048,842  
    Subscribers (subset of Customers)   889,186  
    Households Served in Low-Income Multifamily Properties   21,129  
    Networked Solar Energy Capacity (in Megawatts)   7,531  
    Networked Solar Energy Capacity for Subscribers (in Megawatts)   6,436  
    Networked Storage Capacity (in Megawatt hours)   2,525  
    Annual Recurring Revenue (in millions) $1,644  
    Average Contract Life Remaining (in years)   17.6  
    Gross Earning Assets Contracted Period (in millions) $13,791  
    Gross Earning Assets Renewal Period (in millions) $4,043  
    Gross Earning Assets (in millions) $17,834  
    Net Earning Assets (in millions) $6,766  
           

    Figures presented above may not sum due to rounding. For adjustments related to Subscriber Value and Creation Cost, please see the supplemental Creation Cost and Net Subscriber Value calculation memo for each applicable period, which is available on investors.sunrun.com.

    Definitions

    Deployments represent solar or storage systems, whether sold directly to customers or subject to executed Customer Agreements (i) for which we have confirmation that the systems are installed, subject to final inspection, or (ii) in the case of certain system installations by our partners, for which we have accrued at least 80% of the expected project cost (inclusive of acquisitions of installed systems).

    Customer Agreements refer to, collectively, solar or storage power purchase agreements and leases.

    Subscriber Additions represent the number of Deployments in the period that are subject to executed Customer Agreements.

    Customer Additions represent the number of Deployments in the period.

    Solar Energy Capacity Installed represents the aggregate megawatt production capacity of our solar energy systems that were recognized as Deployments in the period.

    Solar Energy Capacity Installed for Subscribers represents the aggregate megawatt production capacity of our solar energy systems that were recognized as Deployments in the period that are subject to executed Customer Agreements.

    Storage Capacity Installed represents the aggregate megawatt hour capacity of storage systems that were recognized as Deployments in the period.

    Creation Cost represents the sum of certain operating expenses and capital expenditures incurred divided by applicable Customer Additions and Subscriber Additions in the period. Creation Cost is comprised of (i) installation costs, which includes the increase in gross solar energy system assets and the cost of customer agreement revenue, excluding depreciation expense of fixed solar assets, and operating and maintenance expenses associated with existing Subscribers, plus (ii) sales and marketing costs, including increases to the gross capitalized costs to obtain contracts, net of the amortization expense of the costs to obtain contracts, plus (iii) general and administrative costs, and less (iv) the gross profit derived from selling systems to customers under sale agreements and Sunrun’s product distribution and lead generation businesses. Creation Cost excludes stock based compensation, amortization of intangibles, and research and development expenses, along with other items the company deems to be non-recurring or extraordinary in nature. The gross margin derived from solar energy systems and product sales is included as an offset to Creation Cost since these sales are ancillary to the overall business model and lowers our overall cost of business. The sales, marketing, general and administrative costs in Creation Costs is inclusive of sales, marketing, general and administrative activities related to the entire business, including solar energy system and product sales. As such, by including the gross margin on solar energy system and product sales as a contra cost, the value of all activities of the Company’s segment are represented in the Net Subscriber Value.

    Subscriber Value represents the per subscriber value of upfront and future cash flows (discounted at 6%) from Subscriber Additions in the period, including expected payments from customers as set forth in Customer Agreements, net proceeds from tax equity finance partners, payments from utility incentive and state rebate programs, contracted net grid service program cash flows, projected future cash flows from solar energy renewable energy credit sales, less estimated operating and maintenance costs to service the systems and replace equipment, consistent with estimates by independent engineers, over the initial term of the Customer Agreements and estimated renewal period. For Customer Agreements with 25 year initial contract terms, a 5 year renewal period is assumed. For a 20 year initial contract term, a 10 year renewal period is assumed. In all instances, we assume a 30-year customer relationship, although the customer may renew for additional years, or purchase the system.

    Net Subscriber Value represents Subscriber Value less Creation Cost.

    Total Value Generated represents Net Subscriber Value multiplied by Subscriber Additions.

    Customers represent the cumulative number of Deployments, from the company’s inception through the measurement date.

    Subscribers represent the cumulative number of Customer Agreements for systems that have been recognized as Deployments through the measurement date.

    Networked Solar Energy Capacity represents the aggregate megawatt production capacity of our solar energy systems that have been recognized as Deployments, from the company’s inception through the measurement date.

    Networked Solar Energy Capacity for Subscribers represents the aggregate megawatt production capacity of our solar energy systems that have been recognized as Deployments, from the company’s inception through the measurement date, that have been subject to executed Customer Agreements.

    Networked Storage Capacity represents the aggregate megawatt hour capacity of our storage systems that have been recognized as Deployments, from the company’s inception through the measurement date.

    Gross Earning Assets is calculated as Gross Earning Assets Contracted Period plus Gross Earning Assets Renewal Period.

    Gross Earning Assets Contracted Period represents the present value of the remaining net cash flows (discounted at 6%) during the initial term of our Customer Agreements as of the measurement date. It is calculated as the present value of cash flows (discounted at 6%) that we would receive from Subscribers in future periods as set forth in Customer Agreements, after deducting expected operating and maintenance costs, equipment replacements costs, distributions to tax equity partners in consolidated joint venture partnership flip structures, and distributions to project equity investors. We include cash flows we expect to receive in future periods from tax equity partners, government incentive and rebate programs, contracted sales of solar renewable energy credits, and awarded net cash flows from grid service programs with utilities or grid operators.

    Gross Earning Assets Renewal Period is the forecasted net present value we would receive upon or following the expiration of the initial Customer Agreement term but before the 30th anniversary of the system’s activation (either in the form of cash payments during any applicable renewal period or a system purchase at the end of the initial term), for Subscribers as of the measurement date. We calculate the Gross Earning Assets Renewal Period amount at the expiration of the initial contract term assuming either a system purchase or a renewal, forecasting only a 30-year customer relationship (although the customer may renew for additional years, or purchase the system), at a contract rate equal to 90% of the customer’s contractual rate in effect at the end of the initial contract term. After the initial contract term, our Customer Agreements typically automatically renew on an annual basis and the rate is initially set at up to a 10% discount to then-prevailing utility power prices.

    Net Earning Assets represents Gross Earning Assets, plus total cash, less adjusted debt and less pass-through financing obligations, as of the same measurement date. Debt is adjusted to exclude a pro-rata share of non-recourse debt associated with funds with project equity structures along with debt associated with the company’s ITC safe harboring facility. Because estimated cash distributions to our project equity partners are deducted from Gross Earning Assets, a proportional share of the corresponding project level non-recourse debt is deducted from Net Earning Assets, as such debt would be serviced from cash flows already excluded from Gross Earning Assets.

    Cash Generation is calculated using the change in our unrestricted cash balance from our consolidated balance sheet, less net proceeds (or plus net repayments) from all recourse debt (inclusive of convertible debt), and less any primary equity issuances or net proceeds derived from employee stock award activity (or plus any stock buybacks or dividends paid to common stockholders) as presented on the Company’s consolidated statement of cash flows. The Company expects to continue to raise tax equity and asset-level non-recourse debt to fund growth, and as such, these sources of cash are included in the definition of Cash Generation. Cash Generation also excludes long-term asset or business divestitures and equity investments in external non-consolidated businesses (or less dividends or distributions received in connection with such equity investments). Restricted cash in a reserve account with a balance equal to the amount outstanding of 2026 convertible notes is considered unrestricted cash for the purposes of calculating Cash Generation.

    Annual Recurring Revenue represents revenue arising from Customer Agreements over the following twelve months for Subscribers that have met initial revenue recognition criteria as of the measurement date.

    Average Contract Life Remaining represents the average number of years remaining in the initial term of Customer Agreements for Subscribers that have met revenue recognition criteria as of the measurement date.

    Households Served in Low-Income Multifamily Properties represent the number of individual rental units served in low-income multi-family properties from shared solar energy systems deployed by Sunrun. Households are counted when the solar energy system has interconnected with the grid, which may differ from Deployment recognition criteria.

    Positive Environmental Impact from Customers represents the estimated reduction in carbon emissions as a result of energy produced from our Networked Solar Energy Capacity over the trailing twelve months. The figure is presented in millions of metric tons of avoided carbon emissions and is calculated using the Environmental Protection Agency’s AVERT tool. The figure is calculated using the most recent published tool from the EPA, using the current-year avoided emission factor for distributed resources on a state by state basis. The environmental impact is estimated based on the system, regardless of whether or not Sunrun continues to own the system or any associated renewable energy credits.

    Positive Expected Lifetime Environmental Impact from Customer Additions represents the estimated reduction in carbon emissions over thirty years as a result of energy produced from solar energy systems that were recognized as Deployments in the period. The figure is presented in millions of metric tons of avoided carbon emissions and is calculated using the Environmental Protection Agency’s AVERT tool. The figure is calculated using the most recent published tool from the EPA, using the current-year avoided emission factor for distributed resources on a state by state basis, leveraging our estimated production figures for such systems, which degrade over time, and is extrapolated for 30 years. The environmental impact is estimated based on the system, regardless of whether or not Sunrun continues to own the system or any associated renewable energy credits.

    Total Cash represents the total of the restricted cash balance and unrestricted cash balance from our consolidated balance sheet.

    Investor & Analyst Contact:

    Patrick Jobin
    SVP, Deputy CFO & Investor Relations Officer
    investors@sunrun.com

    Media Contact:

    Wyatt Semanek
    Director, Corporate Communications
    press@sunrun.com

    The MIL Network

  • MIL-OSI: Turbo Energy Unveils SUNBOX Home Lite, the Next Generation in AI-Optimized, All-In-One Solar Energy Storage Solution for Residential Installations Throughout Spain

    Source: GlobeNewswire (MIL-OSI)

    VALENCIA, Spain, Feb. 26, 2025 (GLOBE NEWSWIRE) — Turbo Energy, S.A. (NASDAQ:TURB) (“Turbo Energy” or the “Company”), a global provider of leading-edge, AI-optimized solar energy storage technologies and solutions, today proudly announced official market launch of the Company’s latest innovation in smart photovoltaic energy storage tailored for smaller residential installations – the SUNBOX Home Lite.

    Turbo Energy and Solar360 Introduce SUNBOX Home Lite, the Latest Innovation in All-In-One Solar Energy Storage Solutions

    SUNBOX Home Lite combines the sleek design and robust functionality of the original SUNBOX Home with a focus on homes requiring less than 15kh of solar energy storage. This cutting edge innovation is supported by Turbo Energy’s state-of-the-art cloud-based SaaS solution, which leverages Artificial Intelligence to provide intelligent data collection, optimized stored energy management and predictive analytics which provide real-time insight into weather and electricity price forecasts, solar panel performance, energy consumption and material cost savings opportunities.

    Turbo Energy has shipped 100 units to Solar360, which are available for immediate installation. A longstanding valued partner of Turbo Energy, Solar360, a joint venture of Repsol and Telefónica España, is engaged in the photovoltaic self-consumption business offering comprehensive solutions for individual customers; communities of neighbors; and companies, both SMEs and large corporations, through solar panel installations. In addition to the reach of its channels and its strength in operations and distribution, Telefónica contributes its technological expertise and IoT capabilities to provide differential optimization in the market. Repsol brings its experience in self-consumption and multi-energy in Spain, allowing them to offer customers a specific electricity rate that complements photovoltaic installations.

    Commenting on the launch of SUNBOX Home Lite, Alberto Jimenez, Director General del Segmento Masivo of Solar360, stated, “We chose Turbo Energy because it is a Spain-based company offering the industry’s most cutting-edge solar energy storage solutions – optimized with Artificial Intelligence. With the addition of SUNBOX Home Lite to Solar360’s growing line of Turbo Energy innovations, we are now empowered to address customer demand from smaller homeowners for solar energy storage solutions that have been specifically configured to satisfy their reduced energy storage requirements without having to sacrifice product quality, ease of installation and use and unmatched functionality.”

    Mariano Soria, Turbo Energy Chief Executive Officer, added, “We are excited to launch SUNBOX Home Lite in collaboration with Solar360. Since entering the self-consumption solar energy market, Solar360 has grown rapidly, demonstrating that it understands how to read the needs of its customers and earning the reputation of being a true expert in the area of photovoltaic installations.”

    Continuing, Soria said, “The market introduction of SUNBOX Home Lite not only enhances our Company’s growing line of proprietary all-in-one product offerings, but also reinforces our commitment to making affordable, sustainable energy accessible to every household. This is yet another testament to our mission of providing solutions that not only meet, but consistently exceed, the expectations of our customers and business partners. As a result, SUNBOX Home Lite is expected to measurably contribute to Turbo’s future growth and further extend and enhance our Company’s industry reputation as a customer-centric innovator of smart photovoltaic storage solutions.”

    About Turbo Energy, S.A.

    Founded in 2013, Turbo Energy is a globally recognized pioneer of proprietary solar energy storage technologies and solutions managed through Artificial Intelligence. Turbo Energy’s elegant all-in-one and scalable, modular energy storage systems empower residential, commercial and industrial users expanding across Europe, North America and South America to materially reduce dependence on traditional energy sources, helping to lower electricity costs, provide peak shaving and uninterruptible power supply and realize a more sustainable, energy-efficient future. A testament to the Company’s commitment to innovation and industry disruption, Turbo Energy’s introduction of its flagship SUNBOX represents one of the world’s first high performance, competitively priced, all-in-one home solar energy storage systems, which also incorporates patented EV charging capability and powerful AI processes to optimize solar energy management. Turbo Energy is a proud subsidiary of publicly traded Umbrella Global Energy, S.A., a vertically integrated, global collective of solar energy-focused companies. For more information, please visit www.turbo-e.com.

    Forward-Looking Statements

    Statements in this press release about future expectations, plans and prospects, as well as any other statements regarding matters that are not historical facts, may constitute “forward-looking statements” within the meaning of The Private Securities Litigation Reform Act of 1995. Forward-looking statements are neither historical facts nor assurances of future performance. Instead, they are based only on current beliefs, expectations and assumptions regarding the future of the business of the Company, future plans and strategies, projections, anticipated events and trends, the economy and other future conditions. The words “anticipate,” “believe,” “continue,” “could,” “estimate,” “expect,” “intend,” “may,” “plan,” “potential,” “predict,” “project,” “should,” “target,” “will,” “would” and similar expressions are intended to identify forward-looking statements, although not all forward-looking statements contain these identifying words. Because forward-looking statements relate to the future, they are subject to inherent uncertainties, risks and changes in circumstances that are difficult to predict and many of which are outside of our control, including the risks described in our registration statements and annual report under the heading “Risk Factors” as filed with the Securities and Exchange Commission. Actual results and financial condition may differ materially from those indicated in the forward-looking statements. Therefore, you should not rely on any of these forward-looking statements. Any forward-looking statements contained in this press release speak only as of the date hereof, and Turbo Energy, S.A. specifically disclaims any obligation to update any forward-looking statement, whether as a result of new information, future events or otherwise.

    For more information, please contact:
    At Turbo Energy, S.A.
    Dodi Handy, Director of Communications
    Phone: 407-960-4636
    Email: dodihandy@turbo-e.com

    Attachment

    The MIL Network

  • MIL-OSI Asia-Pac: A National Conference on ‘Sustainable Cooling and Doubling the Rate of Energy Efficiency Improvement,’ was held in New Delhi on Feb. 21-22, 2025

    Source: Government of India (2)

    Posted On: 25 FEB 2025 5:49PM by PIB Delhi

    A National Conference on ‘Sustainable Cooling and Doubling the Rate of Energy Efficiency Improvement,’ was organised in New Delhi on Feb. 21-22, 2025. The two-day conference was jointly organized by the Bureau of Energy Efficiency (BEE) and the Power Foundation of India (PFI), under the Ministry of Power, Govt. of India.

    The Hon’ble Union Minister of Power and Housing and Urban Affairs, Shri Manohar Lal, inaugurated the Conference. While delivering his inaugural address, he remarked, Energy efficiency is not just an option but a necessity for a cleaner, more sustainable, and economically prosperous future. By doubling the rate of energy efficiency improvement, we can lower costs, enhance productivity, and significantly cut greenhouse gas emissions.”

    The Hon’ble Minister highlighted that India’s power sector has made remarkable progress, with non-fossil fuel capacity reaching 47.15% and emission intensity reduced by 36% – well ahead of our commitments,” he added.

    The Hon’ble Minister also launched a Report titled ‘India Energy Scenario 2023-24’ that provides a comprehensive overview of the country’s energy landscape, trends, and progress in energy efficiency and sustainability.

    The Hon’ble Minister also unveiled a set of Energy-Efficient Retrofit manuals and flyers designed to offer a structured approach for evaluating, planning, and carrying out retrofits in existing commercial and residential buildings. These manuals will serve as a crucial resource for States/UTs, policymakers, and stakeholders in promoting energy efficiency initiatives.

    Hon’ble Minister of State for Power and New and Renewable Energy, Shri Shripad Naik was also present at the inauguration. In his keynote address, he said, “India stands at a crucial juncture where increasing energy demand must be balanced with ambitious climate goals. As the world’s third-largest energy consumer, our commitment to doubling energy efficiency and advancing sustainable cooling is vital for economic growth and climate action. We have met our Nationally Determined Contributions well ahead of time. Under India’s leadership, the G20 and COP28 reinforced the urgency of accelerating energy efficiency globally.”

    Speaking on the occasion, Shri Pankaj Agarwal, Secretary, Ministry of Power, underlined that the G20 Summit in India in 2023 was a pivotal moment in advancing global energy efficiency, highlighting energy efficiency as the ‘first fuel’ and the adoption of the Voluntary Action Plan to double the rate of energy efficiency improvement by 2030 through the New Delhi Leaders’ Declaration (NDLD). He stressed on the need to optimize energy demand from various sectors for doubling the rate of energy savings improvement by 2030.

    To achieve this goal, India’s Energy Intensity (EI) improvement rate, estimated at approximately 2.5% in 2024, will need to increase to 4% by 2030, as per an estimate by the International Energy Agency (IEA).

    While the policies and technologies to achieve the doubling goal are well-recognized and available, greater clarity is needed through stakeholder consultations on measuring energy intensity improvement, attributing energy savings impact, and translating global commitments into actionable steps. There is a pressing need to address rising cooling demand and ensure access to energy-efficient, sustainable cooling solutions. The two-day conference served as a significant step toward advancing discussions, fostering collaboration, and driving actionable solutions in this domain.

    The National Conference brought together key stakeholders from the government, national and international agencies, multilateral organizations, civil society, industry associations, financial institutions, and consumers. Knowledge partners include global organizations such as the IEA, Sustainable Energy for All (SE4All), CLASP, and the International Council on Clean Transportation (ICCT), along with leading Indian think tanks like The Energy and Resources Institute (TERI), the Council for Energy, Environment and Water (CEEW), and the Alliance for an Energy Efficient Economy (AEEE). The Conference featured thematic sessions covering Buildings, Appliances, Industry, Transport, Investment, and Sustainable Cooling.

    More than 50 speakers and 250 delegates were part of the Conference. The two-day National Conference concluded on Feb. 22, 2025.

    About the Bureau of Energy Efficiency:

    The Bureau of Energy Efficiency (BEE), a statutory agency under the Ministry of Power, Government of India, leads efforts to enhance energy efficiency across the economy using various regulatory and promotional tools. The Bureau focuses on developing policies and strategies that emphasize self-regulation and market-driven principles, aiming to reduce the energy intensity of the Indian economy. BEE has launched numerous initiatives to promote energy efficiency in areas such as household lighting, commercial buildings, appliance standards and labelling, demand-side management in agriculture and municipalities, and across SMEs and large industries. It has also begun developing energy consumption norms for industrial sub-sectors and focuses on capacity building for State Designated Agencies (SDAs).

    About Power Foundation of India:

    The Power Foundation of India is a think-tank and a policy advocacy body in the power sector, operating under the Ministry of Power, Govt. of India.

    The Foundation conducts independent, evidence-based research on key issues and challenges within the power sector. Its research covers a wide range of topics, including power generation, transmission, distribution, electricity trading, energy transition, and environmental sustainability.

    Additionally, the Foundation designs and implements campaigns and outreach programs focused on relevant power sector themes.

    ****

    JN/SK

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    MIL OSI Asia Pacific News

  • MIL-OSI Asia-Pac: “Indian Railways is marching towards achieving the objective of Net Zero” -Shri Ashwini Vaishnaw

    Source: Government of India

    “Indian Railways is marching towards achieving the objective of Net Zero” -Shri Ashwini Vaishnaw

    Power purchasing agreement of 170 MW signed between Indian Railways and Madhya Pradesh Government, marking the procurement of cheapest renewable energy in India

    Railways Minister Urges states to share solar & wind energy to Indian Railways

    Till date, Indian Railway has tied up 4,260 MW (installed) of Solar and 3,427 MW (installed) of wind energy for its energy requirements

    Commitment to achieve 100% electrification in Railways and maximize renewable energy usage

    Posted On: 24 FEB 2025 7:40PM by PIB Delhi

    Addressing investors and entrepreneurs at the Global Investors Summit 2025 in Bhopal, Union Minister for Railways, Information & Broadcasting, and Electronics & IT, Shri Ashwini Vaishnaw outlined Indian Railways’ vision for electrification and the adoption of alternative energy sources.

    Shri Mohan Yadav, Chief Minister of Madhya Pradesh, and Shri Rakesh Shukla, Minister of New and Renewable Energy, Government of Madhya Pradesh were also present in the event.

    Participating via video conferencing from Rail Bhawan, the Union Railway Minister emphasized the Indian government’s goal to achieve ‘Net Zero’ carbon emissions for Indian Railways, with 100% electrification slated for completion in the 2025-26 financial year. The next objective is to maximize renewable energy procurement.

    With this vision, Indian Railways has already tied up 1,500 MW of renewable energy. Further strengthening this commitment, a significant 170 MW Power Purchase Agreement (PPA) was signed today with the Madhya Pradesh government. This milestone marks the procurement of India’s cheapest solar power at Rs 2.15/kWh and the Minister reaffirmed enthusiasm for exploring wind and nuclear energy procurement. The Government of Madhya Pradesh, through Rewa Ultra Mega Solar Power Limited (RUMSL), is supplying solar power to Indian Railways from its largest solar park.

    Shri Ashwini Vaishnaw commended Madhya Pradesh Chief Minister Shri Mohan Yadav for his active role in advancing railway development in the state. He reiterated the Indian government’s strong commitment to a sustainable and green future for the country’s transportation network.

    Today’s PPA was signed between key stakeholders, including West Central Railway (WCR), represented by Dy. CEE/HQ Shri Chetan Gulwani; RUMSL, represented by Executive Engineer Shri Avneesh Shukla; and Waree Forever Energies Pvt Ltd, the solar power developer.

    The Minister also added that Indian Railways is committed to achieving net-zero emissions and shifting from road to rail transport to promote environmental sustainability, reduce oil imports, and lower overall logistics costs. As part of this vision, it is meeting its energy requirements through non-fossil sources such as solar, wind, and nuclear power. The collaboration with RUMSL is a significant step in this direction.

    In addition to setting up its own solar systems, Indian Railways is also securing solar power through PPA arrangements with developers. By 2030, Indian Railways’ traction power requirement is projected to reach 10,000 MW. So far, it has secured 4,260 MW of installed solar capacity and 3,427 MW of installed wind capacity to meet its energy needs, the Minister said.

    Call for Nationwide Collaboration in Renewable Energy

    Shri Ashwini Vaishnaw urged all Indian states to contribute renewable energy—be it solar, wind, hydro, or nuclear power—to Indian Railways, emphasizing a collaborative approach to sustainable energy. He praised the successful partnership model between the Railway Ministry and the Government of Madhya Pradesh, which facilitates direct PPA agreements between the state’s energy generators and Indian Railways.

    Historic Budget Allocation for Madhya Pradesh Rail Infrastructure

    Highlighting the record-breaking budget of ₹14,745 crore allocated to Madhya Pradesh’s railway sector for FY 2025-26, the Minister stated that this is the highest-ever budgetary allocation for the state. Infrastructure development has accelerated significantly, with railway track laying increasing from 29 km per year before 2014 to 230 km per year today—a 7.5x increase.

    Overview of RUMSL

    Parameter

    Details

    Capacity

    1500 MW

    Solar Parks Location

    Agar, Shajapur, and Neemuch districts in Northwest Madhya Pradesh

    Quantum to Railway

    195 MW equivalent (Total installed 400 MW) (Annual Solar Power Supply is 757 Million Units)

    Tariff

    Rs 2.15 /kWh for Neemuch unit (lowest in the country)

    CUF (Capacity Utilization Factor)

    44.3% under Optimum Scheduling

    Joint Venture Partners

    Solar Energy Corporation of India (SECI) and Madhya Pradesh Urja Vikas Nigam Limited (MPUVNL)

    PPA Duration

    25 years

    Nodal Railway

    WCR (Power supplied via grid to Indian Railways in six states)

    Target Completion Date

    December 2025

     

    Tied up solar Installed capacity with Indian Railways:

    Project

    Installed Capacity (in MW)

    Rooftop of stations and Rly service building

    203

    Bhilai

    50

    MCF

    3.13

    Diwana

    2

    Bina

    1.7

    RUMS (Rewa)

    400

    BSUL (Bundelkhand)

    800

    IRCON (Pavagarh, Karnataka)

    500

    RERTC (SECI) (Rajasthan)

    100

    900 MW RERTC (Bikaner NTPC, Jaisalmer 450 MW, Fatehgarh 200 MW)

    1300

    600 MW RERTC (NTPC, Bikaner, TEQ Green Barmer)

    901

    Total

    4260.83

     

    About the Rewa Ultra Mega Solar Power Limited (RUMSL)

    RUMSL, designated as a Solar Power Park Developer (SPPD) by the Ministry of New and Renewable Energy (MNRE), was entrusted with developing large-scale solar parks in Madhya Pradesh under the Ultra Mega Renewable Energy Power Projects (UMREPP) scheme of the Government of India. To ensure efficiency and expertise in executing and operating such large-scale projects, RUMSL adopted the DBFOO (Design, Build, Finance, Own, and Operate) model. The initiative significantly contributed to India’s renewable energy sector, increasing the country’s solar power generation capacity by 2.50%. Notably, it achieved the lowest-ever tariff awarded for a solar public-private partnership (PPP) in India, at INR 2.97 per kWh, without any viability gap funding from the government. Recognized for its innovation and impact, the project was included in the Prime Minister’s “Book of Innovation” and was honored with the prestigious “President Award” from the World Bank.

    ****

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    MIL OSI Asia Pacific News

  • MIL-OSI Asia-Pac: SECI signs MoU with Government of MP for 200 MW Solar Project at Dhar

    Source: Government of India (2)

    Posted On: 24 FEB 2025 7:14PM by PIB Delhi

     

    Solar Energy Corporation of India Limited (SECI), a Navratna CPSU under the Ministry of New & Renewable Energy, has signed a Memorandum of Understanding (MoU) with the Government of Madhya Pradesh for setting up 200 MW Solar Project in Dhar under the CPSU Scheme and a 1000 MWh Battery Storage Project in the state. The MoU was signed at the two-day Global Investors Summit 2025 ongoing at Bhopal from 24th to 25th February 2025.

    The Global Investors Summit 2025, organised by the Government of Madhya Pradesh was inaugurated by Hon’ble Prime Minister of India in the presence of  Hon’ble Governor of Madhya Pradesh Shri Mangubhai Chhaganbhai Patel  and Hon’ble Chief Minister of Madhya Pradesh Shri Mohan Yadav.

    The MoU was signed by Shri Sivakumar V Vepakomma, Director (Power Systems) SECI and Shri. Manu Srivastava, IAS, Additional Chief Secretary (NRE) in the presence of Hon’ble Minister of New & Renewable Energy of Madhya Pradesh Shri Rakesh Shukla and Shri. R P Gupta, IAS (Retd) Chairman and Managing Director, SECI.

    The 200 MW Solar Project is part of a 500 MW Agreement which was executed in 2023 with MP Power Management Company Limited (MPPMCL) for a period of 25 years under which SECI will supply the electricity to the state. SECI has proposed a phase-wise capital expenditure of Rs 2500 Cr for expansion and development of Renewable Energy in the state of Madhya Pradesh.

    The summit was attended by various stakeholders of the Government of India and representatives of various countries and states.

    *********

    Navin Sreejith 

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    MIL OSI Asia Pacific News

  • MIL-OSI China: China’s Shandong makes efforts to develop future-oriented industries

    Source: People’s Republic of China – State Council News

    China’s Shandong makes efforts to develop future-oriented industries

    Updated: February 24, 2025 08:55 Xinhua
    Staff work in a wind power equipment production workshop of Sany Renewable Energy (Rizhao) Wind Power Equipment Manufacturing Co., Ltd. in Rizhao, east China’s Shandong Province, Feb. 22, 2025. In recent years, local authorities in Rizhao have made efforts to assist traditional advantageous industries in innovating and develop an array of emerging and future-oriented industries. [Photo/Xinhua]
    A staff member works in a wind power equipment production workshop of Sany Renewable Energy (Rizhao) Wind Power Equipment Manufacturing Co., Ltd. in Rizhao, east China’s Shandong Province, Feb. 22, 2025. [Photo/Xinhua]
    A staff member patrols near a production line of Asia Symbol (Shandong) Pulp and Paper Co., Ltd. in Rizhao, east China’s Shandong Province, Feb. 22, 2025. [Photo/Xinhua]
    Staff work in the crawler harvester production workshop of Rizhao Liying Machinery Manufacturing Co., Ltd in Rizhao, east China’s Shandong Province, Feb. 22, 2025. [Photo/Xinhua]
    Staff process the products in Shandong Xingchen Aluminum Technology Co., Ltd. in Rizhao, east China’s Shandong Province, Feb. 22, 2025. [Photo/Xinhua]
    A staff member works in a wind power equipment production workshop of Sany Renewable Energy (Rizhao) Wind Power Equipment Manufacturing Co., Ltd. in Rizhao, east China’s Shandong Province, Feb. 22, 2025. [Photo/Xinhua]
    A staff member works in a crawler harvester production workshop of Rizhao Liying Machinery Manufacturing Co., Ltd in Rizhao, east China’s Shandong Province, Feb. 22, 2025. [Photo/Xinhua]
    A staff member works at a production line of Asia Symbol (Shandong) Pulp and Paper Co., Ltd. in Rizhao, east China’s Shandong Province, Feb. 22, 2025. [Photo/Xinhua]
    A staff member assembles a tractor in Rizhao Liying Machinery Manufacturing Co., Ltd. in Rizhao, east China’s Shandong Province, Feb. 22, 2025. [Photo/Xinhua]
    A staff member calibrates an engraving machine in Rizhao Huiming Machinery Equipment Co., Ltd. in Rizhao, east China’s Shandong Province, Feb. 22, 2025. [Photo/Xinhua]

    MIL OSI China News

  • MIL-OSI USA: NREL Plant Biologist Maureen McCann Named Senior Research Fellow

    Source: US National Renewable Energy Laboratory


    Senior Research Fellow Maureen McCann poses with a mass spectrometer in a research lab. Photo by Agata Bogucka, NREL

    The U.S. Department of Energy’s National Renewable Energy Laboratory (NREL) has selected Maureen McCann, an internationally renowned plant biologist, to its highest technical position for a scientist: Senior Research Fellow.

    Of the more than 4,000 people who work at NREL, only 16 are current senior research fellows. Fellows are nominated by the leaders of NREL’s five research directorates, and recommendations from peer scientists play a large role in the selection process. In this prestigious role, McCann will advise NREL’s executive leadership on the strategic direction of laboratory research as it works toward advanced energy solutions.

    “The role of senior research fellow carries great responsibility at NREL,” Laboratory Director Martin Keller said. “They are in the trenches every day, conducting and overseeing research while also keeping an eye on the bigger picture and evaluating our long-term approaches. Elevation to this position is a recognition of Maureen’s talent, experience, and leadership and our belief that she can help take the laboratory to new heights. Congratulations to a fellow biologist.”

    McCann joined NREL in 2020 to direct the laboratory’s Biosciences Center. The center’s team of researchers aims to understand, predict, and control pathways and processes in living organisms to benefit the bioindustrial and agricultural sectors of the bioeconomy.

    Before NREL, she was a professor of biological sciences and director of the NEPTUNE Center for Power and Energy at Purdue University. While there, she also led an Energy Frontier Research Center, the Center for Direct Catalytic Conversion of Biomass to Biofuels, in which NREL was a senior partner. 

    In 2023, McCann took on a leadership role as associate director of the Renewable and Sustainable Energy Institute, a partnership between NREL and the University of Colorado Boulder.

    Speaking on her new role, McCann said she is excited for this next phase of her work at NREL.

    “I’m delighted and honored—it’s a little overwhelming—but can’t wait to step up to this new role and contribute my passion for how life sciences can be entrained for the bioeconomy and biomanufacturing,” McCann said.

    Maureen McCann presents her research at the Senior Research Fellows Dinner. McCann was awarded the distinction prior to her talk at the event. Photo by Agata Bogucka, NREL

    Her career of research uses biochemical, genetic, and molecular biology approaches to understand how the plant cell wall influences the final form and stature of plants. Using basic science to study the proteins and structural properties of the cell wall, McCann can engineer plants to be more productive and resilient for their use as sources of biofuels, chemicals, and materials.

    She is widely cited for her 1990 Journal of Cell Science article, “Direct Visualization of Cross-Links in the Primary Plant Cell Wall,” a field-defining study where measurements were obtained, for the first time, by directly visualizing the primary cell wall of an onion using novel electron microscopy techniques.   

    McCann’s work has also made advancements in the molecular basis of biomass recalcitrance, or the cell wall’s natural resistance to being broken down by microbes and enzymes. Converting plant biomass into usable sugars and aromatics, such as capturing glucose and xylose from cell wall polysaccharides, is an avenue to create economic value from heterogeneous waste streams. McCann’s discoveries on recalcitrance could help companies decrease energy inputs needed to prepare biomass for multiple conversion processes, therefore lowering the costs and making biofuel and biochemical production more efficient.

    McCann has authored or co-authored more than 120 peer-reviewed journal articles and has a lifetime h-index of 65, with nearly 22,000 citations. She is a graduate of Churchill College at the University of Cambridge, where she obtained her bachelor’s and master’s degrees in natural sciences before gaining a Ph.D. in botany from the University of East Anglia.

    Learn more about NREL’s science of biological energy conversion research that McCann will help lead.

    MIL OSI USA News

  • MIL-OSI Economics: ACP Announces 2025 Board of Directors

    Source: American Clean Power Association (ACP)

    Headline: ACP Announces 2025 Board of Directors

    WASHINGTON, D.C., February 20, 2025 — The American Clean Power Association (ACP), the clean energy industry’s leading trade organization, has announced its new 2025 Officers, Board of Directors, and Executive Committee.  
    ACP’s new Board features executives from diverse industries investing in America, including leaders across solar, storage, offshore and land-based wind, clean hydrogen, and transmission, as well as manufacturers, financial firms, utilities, construction companies, and developers. 
    “After many years with the organization, I am honored to now serve as ACP Board Chair and eager to tackle the challenges facing the renewable energy industry,” said Laura Beane, ACP Board Chair and President of Vestas North America. “Our nation requires an all-of-the-above energy approach to drive development, strengthen U.S. energy dominance, and create generational jobs for Americans across the country. I believe this Board is well-equipped to deliver solutions that will advance our priorities and accelerate domestic energy growth to meet the surge in demand.”   
    The new Board and Officers were approved at ACP’s February Board meeting and will serve a one-year term. They include:   
    Chair: Laura Beane, President, Vestas North America    
    Chair-Elect: David Carroll, Chief Renewables Officer, ENGIE North America 
    Treasurer: Brian Van Abel, Executive Vice President and Chief Financial Officer, Xcel Energy  
    Secretary: David Hardy, Global Chief Commercial Officer, GE Vernova Wind 
    “During a period of rapid demand growth and a push for American energy dominance, leadership in the energy industry has never been more consequential. The 2025 ACP Board represents a wide-ranging group of strong leaders who are meeting the moment,” said ACP CEO Jason Grumet. “Harnessing America’s diverse energy resources is essential to our national security and global power. The ACP Board encourages collaboration across all energy sectors and will drive the policies and innovations needed to contribute to an all-of-the-above energy strategy, strengthen our economy, and secure America’s energy future.” 
    The ACP Board has also selected a new Executive Committee. Along with the Officers, the committee will include executives from these clean energy-focused companies: 
    AES Clean Energy: Kleber Costa, Chief Commercial Officer 
    Array Technologies: Kevin Hostetler, Chief Executive Officer 
    Avangrid Renewables: Puneet Verma, Vice President, Federal Government Affairs 
    BHE Renewables: Alicia R. Knapp, President and CEO 
    Dominion Energy: Mark Mitchell, SVP of Project Construction 
    ENGIE North America: David Carroll, Chief Renewables Officer 
    Fluence: John Zahurancik, President Americas 
    Form Energy: Mateo Jaramillo, CEO and Co‐Founder 
    GE Vernova Wind: David Hardy, Global Chief Commercial Officer 
    Grid United: Alistair Vickers, Chief Operating Officer 
    Intersect Power: Sheldon Kimber, CEO, Founder 
    Invenergy: Jim Murphy, President & Co-Founder 
    ITC Holdings Corp.: Krista Tanner, President 
    LS Power: Paul Segal, Chief Executive Officer 
    NextEra Energy Resources, LLC: Philip A. Musser, Vice President – Head of Government Affairs 
    Southern Power: John L. Pemberton, Senior Vice President, Chief Compliance Officer & General Counsel 
    Vestas North America: Laura Beane, President 
    Xcel Energy: Brian Van Abel, EVP & CFO 
    Ex Officio Roles 
    HASI: Susan D. Nickey, Executive Vice President & Chief Client Officer 
    Ørsted Wind Power North America LLC: Amanda Dasch, CEO Region Americas 
    The 2025 ACP Board of Directors also includes:  
    American Electric Power: Greg Hall, Executive Vice President & Chief Commercial Officer 
    Apex Clean Energy Inc.: Ken Young, President and Chief Executive Officer 
    Clearway Energy Group: Craig Cornelius, President and CEO 
    Cypress Creek Renewables LLC: Sarah Slusser, CEO 
    EDF Renewables North America: Tristan Grimbert, President & Chief Executive Officer 
    EDP Renewables North America LLC: Sandhya Ganapathy, CEO 
    energyRe: Miguel Prado, Chief Executive Officer 
    Eolian: Stephanie Smith, COO 
    Equinor: Molly Morris, President, Renewables Americas 
    Leeward Renewable Energy, LLC: Jason Allen, Chief Executive Officer 
    LG Vertech: Jaehong Park, President and CEO 
    MasTec Inc.: Jose Mas, CEO 
    Mortenson: Mark Donahue, Executive Vice President 
    Nextracker: Dan Shugar, Founder and CEO 
    Nordex Group: Manav Sharma, Chief Executive Officer – North America 
    Pattern Energy Group Services, LP: Hunter Armistead, Chief Executive Officer 
    Pine Gate Renewables: Ben Catt, CEO 
    Quanta Services: B.J. Ducey, President of Strategic Operations 
    RWE Clean Energy: Andrew Flanagan, CEO 
    Shell New Energies US LLC: Nick Lincon, VP Onshore Renewables North America & President, Savion 
    SOLV Energy: George Hershman, Chief Executive Officer 
    TPI Composites, Inc.: Bill Siwek, President and CEO 
    WECS Renewables: Theresa Eaton, CEO, Chair & Owner 
    Xcel Energy: Brian Van Abel, EVP & CFO 

    MIL OSI Economics