Residential Microgrids and Rural Electrifications contains an overview of microgrids' architecture, load assessments, designing of microgrids for residential systems, and rural electrifications to help readers understand the fundamentals. Including many new topics in the field of home automation and the application of IoT for microgrids monitoring and control, the book includes sections on the infrastructure necessary for charging Electric Vehicles in residential systems and rural electrifications and how to estimate the energy and cost of various combinations of energy resources. Many…mehr
Residential Microgrids and Rural Electrifications contains an overview of microgrids' architecture, load assessments, designing of microgrids for residential systems, and rural electrifications to help readers understand the fundamentals. Including many new topics in the field of home automation and the application of IoT for microgrids monitoring and control, the book includes sections on the infrastructure necessary for charging Electric Vehicles in residential systems and rural electrifications and how to estimate the energy and cost of various combinations of energy resources. Many examples and practical case studies are included to enhance and reinforce learning objective goals.
Those in engineering research and technical professions will be able to perform energy and cost analyses of various combinations of energy sources by using advanced, real simulation tools. Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Sanjeevikumar Padmanaban received the bachelor's degree from the University of Madras, the master's degree from Pondicherry University and the Ph.D. degree University of Bologna. Currently he is working as a Faculty Member with the Department of Energy Technology, Aalborg University, Esbjerg, Denmark. He has authored 300 plus scientific papers and has received the Best Paper cum Most Excellence. He is a fellow the Institution of Engineers, FIE, India, fellow the Institution of Telecommunication and Electronics Engineers, FIETE, India and fellow the Institution of Engineering and Technology, IET, UK. He serves as an Editor/Associate Editor/Editorial Board of refereed journal, in particular, the IEEE Systems Journal, the IEEE Access Journal, the IET Power Electronics, Journal of Power Electronics, Korea, and the subject editor of the subject Editor of IET Renewable Power Generation, the subject Editor of IET Generation, Transmission and Distribution, and the subject editor of FACTS
journal, Canada.
Sanjeevikumar Padmanaban is a Full Professor in Electrical Power Engineering with the Department of Electrical Engineering, Information Technology, and Cybernetics of the University of South-Eastern Norway, Norway. He has over a decade of academic and teaching experience, including Associate/Assistant Professorships at the University of Johannesburg, South Africa (2016-2018), Aalborg University, Denmark (2018-2021) and the CTIF Global Capsule Laboratory at Aarhus University, Denmark (2021-present). Prof. Padmanaban received a lifetime achievement award from Marquis Who's Who - USA 2017 for contributing to power electronics and renewable energy research, and was listed among the world's top 2% of scientists by Stanford University, USA in 2019.
Inhaltsangabe
1. Overview of various microgrid concepts for residential systems and rural electrifications 2. Sources of a microgrid for residential systems and rural electrifications 3. Battery energy storage systems for residential systems and rural electrifications 4. Power and energy management for microgrids in residential systems and rural electrifications 5. Microgrid controllers for residential systems and rural electrifications 6. Internet of Things (IoT) for microgrids monitoring and control 7. Design of microgrids for residential systems 8. Design of microgrids for rural electrifications 9. Electric vehicle charging infrastructure for microgrids 10. Planning of Microgrid for residential systems and rural electrifications in HOMER 11. Protections for residential and rural microgrids 12. Electrical safety for residential and rural microgrids 13. Recent trends in microgrids 14. Case studies of microgrids
1. Overview of various microgrid concepts for residential systems and rural electrifications 2. Sources of a microgrid for residential systems and rural electrifications 3. Battery energy storage systems for residential systems and rural electrifications 4. Power and energy management for microgrids in residential systems and rural electrifications 5. Microgrid controllers for residential systems and rural electrifications 6. Internet of Things (IoT) for microgrids monitoring and control 7. Design of microgrids for residential systems 8. Design of microgrids for rural electrifications 9. Electric vehicle charging infrastructure for microgrids 10. Planning of Microgrid for residential systems and rural electrifications in HOMER 11. Protections for residential and rural microgrids 12. Electrical safety for residential and rural microgrids 13. Recent trends in microgrids 14. Case studies of microgrids
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