Hybrid energy systems are essential for combining different clean generation technologies into a clean and stable power system, incorporating solar, wind and hydropower, as well as energy storage solutions.
This book is written by a group of experts from Asia and Europe, bringing together expertise in handling power distribution for regions with high population density, where demand for electricity is high and continues to rise. Hybrid energy systems are explored in the context of this high-demand environment.
Chapters cover stability analysis, various combinations of generators such as wind and solar, and solar-wind-biomass, harmonizing PV and wind, energy storage, operation and planning, distributed optimization, reactive power management, energy management in smart mesh networks, hybrid renewable energy integration in smart grids, and microgrids, transaction strategies in energy markets, smart transmission, optimization algorithms for maximum power point tracking (MPPT) of PV under shading, and distribution networks with shunt capacitors and on-site generation. Case studies reinforce the lessons learned.
Hybrid Energy Systems: Planning, operation and optimization is written by and for researchers and practitioners involved with energy systems, and will also be of interest to grid and utility operators and policy makers in the energy engineering field.
Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.
Huu Hieu Nguyen is an associate professor and rector of The University of Danang - University of Science and Technology, Vietnam. Prior to that, he was doctoral/postdoctoral researcher at Grenoble Electrical Research Center of Institut National Polytechnique de Grenoble, France. He was involved with national-level projects including research on optimizing the distribution grid using renewable energy sources, and manufacturing of surveillance robots for automating unmanned substations.
Van Ga Bui is a professor at the Faculty Mechanical Engineering of Transport, The University of Danang - University of Science and Technology, Vietnam. Prior positions include Rector of The University of Danang - University of Science and Technology, President of the University of Danang, Vice Minister of Education and Training, Vietnam. He was doctoral/postdoctoral researcher at Ecole Centrale de Lyon (France). He is an Editor-in-chief, Journal of Science and Technology, The University of Danang. His research focuses on fluid mechanics, combustion, renewable energy and air pollution.
Thanh Viet Dinh is an Associate Professor and Vice Rector at Dong A University, Vietnam. He received his PhD degree from Vinnytsia National Technical University (Ukraine). He had been working at the University of Danang for 27 years before joining Dong A University. He has also served as a visiting scholar at Washington State University (USA), the Frankfurt Institute for Advanced Studies (Germany), and Grenoble Institute of Technology (France). His research interests include power system analysis, transmission and distribution networks, renewable energy, and smart grid technologies, with a strong focus on advancing sustainable and resilient energy systems.
Minh Quan Duong is an associate professor at the Faculty of Electrical Engineering, The University of Danang - University of Science and Technology, Vietnam. He received his Ph.D. from Politecnico di Milano, Italy, and has been a visiting scholar at Arizona State University and Indiana University in the United States, as well as the Frankfurt Institute for Advanced Studies in Germany. He is a member of the IEEE Task Force on Fuzzy Systems in Renewable Energy and Smart Grids. His research interests include renewable energy in power systems, power system planning, and smart grids.
Tran T. Hoang is currently a Senior Planning Engineer – Future Systems at Powerco, New Zealand. He completed his PhD in Electrical Engineering at G2Elab, Grenoble Institute of Technology, France, in 2020. He subsequently worked at the National Institute of Solar Energy, French Alternative Energies and Atomic Energy Commission (2020 - mid 2022), as a Research Fellow at the University of Auckland, New Zealand (2022 - 2023), and as a Principal Power System Consultant at Mott Mac-Donald, New Zealand (2023 - March 2025). His research interests focus on renewable energy integration, grid-forming and grid-following inverters, and Advanced Distribution Management Systems (ADMS).
Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.
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Hardcover. Etat : new. Hardcover. Hybrid energy systems are essential for combining different clean generation technologies into a clean and stable power system, incorporating solar, wind and hydropower, as well as energy storage solutions.This book is written by a group of experts from Asia and Europe, bringing together expertise in handling power distribution for regions with high population density, where demand for electricity is high and continues to rise. Hybrid energy systems are explored in the context of this high-demand environment.Chapters cover stability analysis, various combinations of generators such as wind and solar, and solar-wind-biomass, harmonizing PV and wind, energy storage, operation and planning, distributed optimization, reactive power management, energy management in smart mesh networks, hybrid renewable energy integration in smart grids, and microgrids, transaction strategies in energy markets, smart transmission, optimization algorithms for maximum power point tracking (MPPT) of PV under shading, and distribution networks with shunt capacitors and on-site generation. Case studies reinforce the lessons learned.Hybrid Energy Systems: Planning, operation and optimization is written by and for researchers and practitioners involved with energy systems, and will also be of interest to grid and utility operators and policy makers in the energy engineering field. Hybrid energy systems are essential for combining different clean generation technologies. This work, written by a team of experts from Europe and Asia, conveys planning, different generator combinations, planning, energy management, grid integration and economic considerations. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. N° de réf. du vendeur 9781839539770
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Hardback. Etat : New. Hybrid energy systems are essential for combining different clean generation technologies into a clean and stable power system, incorporating solar, wind and hydropower, as well as energy storage solutions. This book is written by a group of experts from Asia and Europe, bringing together expertise in handling power distribution for regions with high population density, where demand for electricity is high and continues to rise. Hybrid energy systems are explored in the context of this high-demand environment. Chapters cover stability analysis, various combinations of generators such as wind and solar, and solar-wind-biomass, harmonizing PV and wind, energy storage, operation and planning, distributed optimization, reactive power management, energy management in smart mesh networks, hybrid renewable energy integration in smart grids, and microgrids, transaction strategies in energy markets, smart transmission, optimization algorithms for maximum power point tracking (MPPT) of PV under shading, and distribution networks with shunt capacitors and on-site generation. Case studies reinforce the lessons learned. Hybrid Energy Systems: Planning, operation and optimization is written by and for researchers and practitioners involved with energy systems, and will also be of interest to grid and utility operators and policy makers in the energy engineering field. N° de réf. du vendeur LU-9781839539770
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HRD. Etat : New. New Book. Shipped from UK. Established seller since 2000. N° de réf. du vendeur L2-9781839539770
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