Autors: Hinov, N. L. Title: Solid-State Transformers in the Global Clean Energy Transition: Decarbonization Impact and Lifecycle Performance Keywords: decarbonization, EV fast charging, life cycle assessment, load profile, renewable integration, smart grids, solid-state transformer, techno-economic analysis, uncertainty analysis, wide-bandgap semicoAbstract: The global clean energy transition requires power conversion technologies that combine high efficiency, operational flexibility, and reduced environmental impact over their entire service life. Solid-state transformers (SSTs) have emerged as a promising alternative to conventional line-frequency transformers, offering bidirectional power flow, high-frequency isolation, and advanced control capabilities that support renewable integration and electrified infrastructures. This paper presents a comparative life cycle assessment (LCA) of conventional transformers and SSTs across representative power-system applications, including residential and industrial distribution networks, electric vehicle fast-charging infrastructure, and transmission–distribution interface substations. The analysis follows a cradle-to-grave approach and is based on literature-derived LCA data, manufacturer specifications, and harmonized engineering assumptions applied consistently across all case studies. The results show that, under identical assumptions, SST-based solutions are associated with indicative lifecycle CO2 emission reductions of approximately 10–30% compared to conventional transformers, depending on power rating and operating profile (≈90–1000 t CO2 over 25 years across the four cases). These reductions are primarily driven by lower operational losses and reduced material intensity, while additional system-level benefits arise from enhanced controllability and compatibility with renewable-rich and hybrid AC/DC grids. The study also identifies key challenges that influence the sustainability performance of SSTs, including higher capital cost, thermal management requirements, and the long-term reliability of power-electronic components. Overall, the results indicate that SSTs represent a relevant enabling technology for future low-carbon power systems, while highlighting the importance of transparent assumptions and lifecycle-oriented evaluation when comparing emerging grid technologies. References - Mollik M.S. Hannan M.A. Reza M.S. Abd Rahman M.S. Lipu M.S.H. Ker P.J. Mansor M. Muttaqi K.M. The Advancement of Solid-State Transformer Technology and Its Operation and Control with Power Grids: A Review Electronics 2022 11 2648 10.3390/electronics11172648
- Abu-Siada A. Budiri J. Abdou A.F. Solid State Transformers Topologies, Controllers, and Applications: State-of-the-Art Literature Review Electronics 2018 7 298 10.3390/electronics7110298
- Hannan M.A. Ker P.J. Lipu M.S.H. Choi Z.H. Rahman M.S.A. Muttaqi K.M. Blaabjerg F. State of the Art of Solid-State Transformers: Advanced Topologies, Implementation Issues, Recent Progress and Improvements IEEE Access 2020 8 19113 19132 10.1109/ACCESS.2020.2967345
- Saleh S.A. Ozkop E. Alsayid B. Richard C. Onge X.F.S. McDonald K.M. Chang L. Solid-State Transformers for Distribution Systems–Part II: Deployment Challenges IEEE Trans. Ind. Appl. 2019 55 5708 5716 10.1109/TIA.2019.2938143
- Santos N. Chaves M. Gamboa P. Cordeiro A. Santos N. Pinto S.F. High Frequency Transformers for Solid-State Transformer Applications Appl. Sci. 2023 13 7262 10.3390/app13127262
- Khan S. Rahman K. Tariq M. Hameed S. Alamri B. Babu T.S. Solid-State Transformers: Fundamentals, Topologies, Applications, and Future Challenges Sustainability 2021 14 319 10.3390/su14010319
- Costa L.F. De Carne G. Buticchi G. Liserre M. The Smart Transformer: A solid-state transformer tailored to provide ancillary services to the distribution grid IEEE Power Electron. Mag. 2017 4 56 67 10.1109/MPEL.2017.2692381
- Huber J.E. Kolar J.W. Applicability of Solid-State Transformers in Today’s and Future Distribution Grids IEEE Trans. Smart Grid 2019 10 317 326 10.1109/TSG.2017.2738610
- Valedsaravi A. Martínez-Salamero L. Review of Solid-State Transformer Applications on Electric Vehicle DC Ultra-Fast Charging Station Energies 2022 15 5602 10.3390/en15155602
- Zhao X. Li B. Fu Q. Mao S. Xu D.G. Leon J.I. Franquelo L.G. DC Solid State Transformer Based on Three-Level Power Module for Interconnecting MV and LV DC Distribution Systems IEEE Trans. Power Electron. 2021 36 1563 1577 10.1109/TPEL.2020.3007674
- Liserre M. Buticchi G. Andresen M. De Carne G. Costa L.F. Zou Z.-X. The Smart Transformer: Impact on the Electric Grid and Technology Challenges IEEE Ind. Electron. Mag. 2016 10 46 58 10.1109/MIE.2016.2551418
- Keerthi Gopal D. Shanavas T.N. Naufal N. Solid State Transformers for Smart Grid Control and Applications—A Review Proceedings of the 2022 International Conference on Futuristic Technologies in Control Systems & Renewable Energy (ICFCR) Malappuram, India 21–22 July 2022 1 6 10.1109/ICFCR54831.2022.9893598
- Kadandani N.B. Dahidah M. Ethni S. An Overview of the Role of Solid State Transformer in Smart Grid 2021 12th International Renewable Energy Congress (IREC) IEEE New York, NY, USA 2021 10.1109/IREC52758.2021.9624767
- Liu Y. Zhang D.H. De Sun D. Performance analysis of a solid state transformer for smart grid Appl. Mech. Mater. 2014 441 174 177 10.4028/www.scientific.net/AMM.441.174
- Mishra D.K. Ghadi M.J. Li L. Hossain J. Zhang J. Ray P.K. Mohanty A. A review on solid-state transformer: A breakthrough technology for future smart distribution grids Int. J. Electr. Power Energy Syst. 2021 133 107255 10.1016/j.ijepes.2021.107255
- Adabi M.E. Martinez-Velasco J.A. Alepuz S. Modeling and simulation of a MMC-based solid-state transformer Electr. Eng. 2018 100 375 387 10.1007/s00202-017-0510-x
- Li Z. Zhao C. Hsieh Y.H. Li Q. Lee F.C. Partial Fluctuating Power Control of Resonant Converter for Solid-State Transformer Proceedings of the 2022 IEEE Applied Power Electronics Conference and Exposition (APEC) Houston, TX, USA 20–24 March 2022 770 776 10.1109/APEC43599.2022.9773455
- Ronanki D. Williamson S.S. Topological Overview on Solid-state Transformer Traction Technology in High-speed Trains Proceedings of the 2018 IEEE Transportation Electrification Conference and Expo (ITEC) Long Beach, CA, USA 13–15 June 2018 32 37 10.1109/ITEC.2018.8450135
- Awal M.A. Montes O.A. Teng F. Wang D. Bipu M.R.H. Yu W. Lukic S. Husain I. Medium Voltage Solid State Transformer for Extreme Fast Charging Applications Proceedings of the 2023 IEEE Applied Power Electronics Conference and Exposition (APEC) Orlando, FL, USA 19–23 March 2023 1528 1535 10.1109/APEC43580.2023.10131285
- Hyde A.R. Advanced Power Converters for Universal and Flexible Power Management in Future Electricity Networks Technical Report AREVA Courbevoie, France 2006
- Wang D. Tian J. Mao C. Lu J. Duan Y. Qiu J. Cai H. A 10-kV/400-V 500-kVA Electronic Power Transformer IEEE Trans. Ind. Electron. 2016 63 6653 6663 10.1109/TIE.2016.2586440
- Cuma M.U. Anvari A.D. Savrun M.M. A Novel Solid-State Transformer with Improved Flyback Converter Equipped with Quasi Z-Source Converter for Medium-Voltage Utility Grid Energies 2023 16 2687 10.3390/en16062687
- Chen H. Divan D. Soft-Switching Solid-State Transformer (S4T) IEEE Trans. Power Electron. 2018 33 2933 2947 10.1109/TPEL.2017.2707581
- Falcones S. Mao X. Ayyanar R. Topology comparison for Solid State Transformer implementation Proceedings of the IEEE PES General Meeting Minneapolis, MN, USA 25–29 July 2010 1 8 10.1109/PES.2010.5590086
- Raaed Faleh Hassan D. Design and software implementation of solid state transformer Int. J. Eng. Technol. 2018 7 1776 10.14419/ijet.v7i3.16423
- Saha J. Yadav G.N.B. Panda S.K. A Matrix-Based Solid-State-Transformer for a Hybrid Nanogrid 2018 IEEE International Conference on Power Electronics, Drives and Energy Systems (PEDES), Chennai, India IEEE New York, NY, USA 2018 1 6 10.1109/PEDES.2018.8707623
- Chen H. Prasai A. Divan D. Dyna-C: A Minimal Topology for Bidirectional Solid-State Transformers IEEE Trans. Power Electron. 2017 32 995 1005 10.1109/TPEL.2016.2547983
- Ivanov G. Mateev V. Marinova I. A Cascaded Neural Network Framework for Estimating Degree of Polymerization of Insulated Paper and DGA Analysis in Power Transformers Proceedings of the 2025 19th Conference on Electrical Machines, Drives and Power Systems (ELMA) Sofia, Bulgaria 19–21 June 2025 1 5 10.1109/ELMA65795.2025.11083400
- Nair A.C. Fernandes B.G. Solid-State Transformer Based Fast Charging Station for Various Categories of Electric Vehicles with Batteries of Vastly Different Ratings IEEE Trans. Ind. Electron. 2021 68 10400 10411 10.1109/TIE.2020.3038091
- Predescu D.-M. Roșu Ș.-G. Solid State Transformers: A Review—Part I: Stages of Conversion and Topologies Technologies 2025 13 74 10.3390/technologies13020074
- Predescu D.-M. Roșu Ș.-G. Solid-State Transformers: A Review—Part II: Modularity and Applications Technologies 2025 13 50 10.3390/technologies13020050
- Wang H. Yu T. Wang M. Ning G. Innovative Matrix-Type AC-AC Solid-State Transformer Eliminating Ripple Power with Double-Grid Frequency Energies 2024 17 1540 10.3390/en17071540
- Rehman A. Imran-Daud M. Haider S.K. Rehman A.U. Shafiq M. Eldin E.T. Comprehensive Review of Solid State Transformers in the Distribution System: From High Voltage Power Components to the Field Application Symmetry 2022 14 2027 10.3390/sym14102027
- Cervero D. Fotopoulou M. Muñoz-Cruzado J. Rakopoulos D. Stergiopoulos F. Nikolopoulos N. Voutetakis S. Sanz J.F. Solid State Transformers: A Critical Review of Projects with Relevant Prototypes and Demonstrators Electronics 2023 12 931 10.3390/electronics12040931
- Blanco-Ortiz J. García-Martínez E. González-Prieto I. Duran M.J. A 75 kW Medium-Frequency Transformer Design Based in Inductive Power Transfer (IPT) for Medium-Voltage Solid-State Transformer Applications Electronics 2025 14 1059 10.3390/electronics14061059
- Zhu C. High-Efficiency, Medium-Voltage-Input, Solid-State-Transformer-Based 400-kW/1000V/400A Extreme Fast Charger for Electric Vehicles VTO Final Report DOE Award No. DE-EE0008450 Delta Electronics (Americas) Ltd. Fremont, CA, USA U.S. Department of Energy Washington, DC, USA 2023
- Joshi A. Nath S. Efficiency Comparison of Solid-State Transformer and Low-Frequency Power Transformer Proceedings of the 2020 3rd International Conference on Energy, Power and Environment: Towards Clean Energy Technologies Shillong, Meghalaya, India 5–7 March 2021 1 6 10.1109/ICEPE50861.2021.9404376
- Piotrowski T. Markowska D. Carbon Footprint of Power Transformers Evaluated Through Life Cycle Analysis Energies 2025 18 1373 10.3390/en18061373
- IEEE/PES Transformers Committee, Kansas City, MO, USA, 23 October 2023 Available online: https://grouper.ieee.org/groups/transformers/subcommittees/performance/TF-CO2Emissions/F23_CO2_Presentation1.pdf (accessed on 25 February 2025)
- Krishnan R. Nair K.R.M. Carbon Footprint of Transformer and the Potential for Reduction of CO2Emissions Proceedings of the 2019 IEEE 4th International Conference on Technology, Informatics, Management, Engineering & Environment (TIME-E) Bali, Indonesia 13–15 November 2019 138 143 10.1109/TIME-E47986.2019.9353301
- Wang Y. Zhang H. Zhou E. Xie L. Li J. Carbon Footprint Analysis of Distribution Network Transformers Based on Life Cycle Assessment Energies 2025 18 600 10.3390/en18030600
- Abu-Salah F. Maalouf E. Comparative life cycle sustainability of transformer cores with metallic glass alloys Clean. Environ. Syst. 2025 19 100367 10.1016/j.cesys.2025.100367
- Hegedić M. Opetuk T. Dukic G. Draskovic H. Life cycle assessment of power transformer-case study Management of Technology–Step to Sustainable Production, Conference Proceedings Croatian Association Zagreb, Croatia 2016
- Mansilha M.B. Brondani M. Farret F.A. Da Rosa L.C. Hoffmann R. Life cycle assessment of electrical distribution transformers: Comparative study between aluminum and copper coils Environ. Eng. Sci. 2019 36 114 135 10.1089/ees.2018.0256
- Londero R.P. De Mello A.P.C. Da Silva G.S. Comparison between conventional and solid state transformers in smart distribution grids 2019 IEEE PES Conference on Innovative Smart Grid Technologies; ISGT Latin America 2019 IEEE New York, NY, USA 2019 10.1109/ISGT-LA.2019.8895327
- Tippannavar S.S. Yashwanth D. Transformer 4.0—A Smart Transformer for a Smarter Living Proceedings of the 2023 3rd International Conference on Innovative Sustainable Computational Technologies (CISCT 2023) Dehradun, India 8–9 September 2023 10.1109/CISCT57197.2023.10351417
- Traisak O. Kumar P. Vahaji S. Zhang Y. Date A. Advancements in Integrated Thermoelectric Power Generation and Water Desalination Technologies: A Comprehensive Review Energies 2025 18 1454 10.3390/en18061454
- Kumar P. Singh O. Investigations on Integrating SOFC with Gas Turbine for Performance Enhancement and Sustainable Energy J. Energy Environ. Sustain. 2019 7 42 46 10.47469/jees.2019.v07.100076
- Li Z. Sun H. Xue Y. Li Z. Jin X. Wang P. Resilience-Oriented Asynchronous Decentralized Restoration Considering Building and E-Bus Co-Response in Electricity-Transportation Networks IEEE Trans. Transp. Electrif. 2025 11 11701 11713 10.1109/TTE.2025.3581349
- Chang L. Li Z. Tian X. Su J. Chang X. Xue Y. Li Z. Jin X. Wang P. Sun H. A two-stage distributionally robust low-carbon operation method for antarctic unmanned observation station integrating virtual energy storage and hydrogen waste heat recovery Appl. Energy 2025 400 126578 10.1016/j.apenergy.2025.126578
Issue
| Energies, vol. 19, 2026, Switzerland, https://doi.org/10.3390/en19020558 |
Copyright MDPI |