Microgrids and other Local Area Power and Energy Systems

Microgrids and other Local Area Power and Energy Systems

Microgrids and other Local Area Power and Energy Systems

Microgrids and other Local Area Power and Energy Systems

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Overview

Describing the formation, integration, planning, composition and operation of microgrids, this book explains how local power systems can address limitations in conventional electric power grids and provides insights into the practical implementation needs and outcomes of microgrid technology. All aspects of microgrid design and applications are covered, including the main technologies involved in microgrids and other local area power and energy systems. The reliability and economic characteristics of microgrid system architecture, energy storage and grid interaction are explored in depth. Over 300 illustrations and real-world application examples make this a fully self-contained resource, ideal for graduate students and professionals in electrical, mechanical and chemical engineering and materials science.

Product Details

ISBN-13: 9781316551882
Publisher: Cambridge University Press
Publication date: 07/14/2016
Sold by: Barnes & Noble
Format: eBook
File size: 37 MB
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About the Author

Alexis Kwasinski is an Associate Professor and R. K. Mellon Faculty Fellow in Energy in the Department of Electrical and Computer Engineering at the University of Pittsburgh. Previously, he was an Associate Professor (with tenure) at the University of Texas, Austin. He is an Associate Editor for the IEEE Transactions on Energy Conversion.
Wayne Weaver is the Dave House Associate Professor of Electrical Engineering in the Department of Electrical and Computer Engineering at Michigan Technological University, Houghton. He is a registered professional engineer in the State of Illinois.
Robert S. Balog is an Associate Professor in the Electrical and Computer Engineering Department at Texas A & M University and holds a joint appointment at Texas A & M University at Qatar. He is the Director of the Renewable Energy and Advanced Power Electronics Research Laboratory, Director of the Solar Energy Technology Testing Laboratory and Co-director of the National Science Foundation Next Generation Photovoltaics I/UCRC at Texas A & M University. He is a Registered Professional Engineer in the State of Illinois and serves on UL technical standards development committees related to photovoltaic energy systems. He is also a Senior Member of the Institute of Electrical and Electronics Engineers (IEEE), an elected Member-at-Large of the IEEE Power Electronics Society, and a Technical Program Chair of the 2016 IEEE Energy Conversion Congress and Expo (ECCE).

Table of Contents

Part I. Motivation: 1. Introduction; 2. Component reliability and system availability; 3. Economics; Part II. Technologies: 4. Power electronic interfaces; 5. Power generation sources; 6. Energy storage; Part III. Integration: 7. System architecture; 8. Operation and control; 9. Grid interaction; 10. Applications; 11. Appendix.
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