This book provides technological and socio-economic coverage of renewable energy. It discusses wind power technologies, solar photovoltaic technologies, large-scale energy storage technologies, and ancillary power systems. Three new chapters have been added to cover turbine generators, AC and DC wind systems, and solar power conversion.
This book provides technological and socio-economic coverage of renewable energy. It discusses wind power technologies, solar photovoltaic technologies, large-scale energy storage technologies, and ancillary power systems. Three new chapters have been added to cover turbine generators, AC and DC wind systems, and solar power conversion.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Mukund R. Patel, PhD, PE, is an Electrical Power engineer and educator with over 50 years of widely recognized expertise in the research, development, and design of advance high-power, high-voltage equipment and systems for land, ships, and space. He has authored over 50 research papers and 5 books, and he has co-authored two international handbooks. Omid Beik, Ph.D., MIEEE, received the B.Sc. degree (Hons.) with highest distinction in electrical engineering from Yazd University, Yazd, Iran, in 2007, the M.Sc. degree with highest distinction in electrical engineering from Shahid Beheshti University, Abbaspour School of Engineering, Tehran, Iran, in 2009, and the Ph.D. degree in electrical engineering from McMaster University, Hamilton, ON, Canada, in 2016. He was a Postgraduate Researcher with the Power Conversion Group, University of Manchester, U.K. (2011-2012) and a Postdoctoral Research Fellow at McMaster Automotive Resource Center (MARC), Hamilton, ON, Canada (2016-2017). His main research is focused on electric machines, drives and power electronics for applications in renewable energy systems and electrified powertrains.
Inhaltsangabe
Part A: Wind Power Systems. 1. Introduction. 2. Wind Power. 3. Wind Speed and Energy. 4. Wind Power Systems. 5. Electrical Generators. 6. Generator Drives. 7. Offshore Wind Farms. 8. AC Wind Systems. 9. DC Wind Systems. Part B: Photovoltaic Power Systems. 10. Photovoltaic Power. 11. Photovoltaic Power Systems. 12. Solar Power Conversion Systems. Part C: System Integration. 13. Energy Storage. 14. Power Electronics. 15. Stand-Alone Systems. 16. Grid-Connected Systems. 17. Electrical Performance. 18. Plant Economy. 19. The Future. Part D: Ancillary Power Technologies. 20. Solar Thermal System. 21. Ancillary Power Systems. Index
Part A: Wind Power Systems. 1. Introduction. 2. Wind Power. 3. Wind Speed and Energy. 4. Wind Power Systems. 5. Electrical Generators. 6. Generator Drives. 7. Offshore Wind Farms. 8. AC Wind Systems. 9. DC Wind Systems. Part B: Photovoltaic Power Systems. 10. Photovoltaic Power. 11. Photovoltaic Power Systems. 12. Solar Power Conversion Systems. Part C: System Integration. 13. Energy Storage. 14. Power Electronics. 15. Stand-Alone Systems. 16. Grid-Connected Systems. 17. Electrical Performance. 18. Plant Economy. 19. The Future. Part D: Ancillary Power Technologies. 20. Solar Thermal System. 21. Ancillary Power Systems. Index
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