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This book covers wind energy system types, operation, modeling, analysis, integration, and control. Featuring numerous models, illustrations, examples, and exercises, the text explains the aerodynamic theories that govern the operation of wind turbines, highlights the differences between the most common types of wind turbines, analyzes the main power electronic circuits used in wind energy, details the electrical generators from the basic principle of induced voltage to the steady-state and dynamic models, and discusses the main integration challenges of wind energy systems with electric utility systems.…mehr

Produktbeschreibung
This book covers wind energy system types, operation, modeling, analysis, integration, and control. Featuring numerous models, illustrations, examples, and exercises, the text explains the aerodynamic theories that govern the operation of wind turbines, highlights the differences between the most common types of wind turbines, analyzes the main power electronic circuits used in wind energy, details the electrical generators from the basic principle of induced voltage to the steady-state and dynamic models, and discusses the main integration challenges of wind energy systems with electric utility systems.
Autorenporträt
Mohamed A. El-Sharkawi received his undergraduate education from Helwan University, Egypt, and his Ph.D from the University of British Columbia, Vancouver, Canada. He is currently professor of electrical engineering in the energy area at the University of Washington, Seattle, USA, where he has also served as the associate chair and the chairman of graduate studies and research. He has published more than 200 research articles, authored four textbooks, and co-authored three research books. An IEEE fellow, Professor El-Sharkawi has been the vice president for technical activities of the IEEE Computational Intelligence Society and the founding chairman of numerous IEEE task forces, working groups, and subcommittees. He holds five licensed patents related to renewable energy, VAR management, and minimum arc sequential circuit breaker switching.