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Wireless Power Transfer: Using Magnetic and Electric Resonance Coupling Techniques

Product ID : 46633178


Galleon Product ID 46633178
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About Wireless Power Transfer: Using Magnetic And

Product Description This book describes systematically wireless power transfer technology using magnetic resonant coupling and electric resonant coupling and presents the latest theoretical and phenomenological approaches to its practical implementation, operation and its applications. It also discusses the difference between electromagnetic induction and magnetic resonant coupling, the characteristics of various types of resonant circuit topologies and the unique features of magnetic resonant coupling methods. Designed to be self-contained, this richly illustrated book is a valuable resource for a broad readership, from researchers to engineers and anyone interested in cutting-edge technologies in wireless power transfer. From the Back Cover This book describes systematically wireless power transfer technology using magnetic resonant coupling and electric resonant coupling and presents the latest theoretical and phenomenological approaches to its practical implementation, operation and its applications. It also discusses the difference between electromagnetic induction and magnetic resonant coupling, the characteristics of various types of resonant circuit topologies and the unique features of magnetic resonant coupling methods. Designed to be self-contained, this richly illustrated book is a valuable resource for a broad readership, from researchers to engineers and anyone interested in cutting-edge technologies in wireless power transfer. About the Author Takehiro Imura is an Associate Professor at the Faculty of Science and Technology, Department of Electrical Engineering at Tokyo University of Science. His research interests include wireless power transfer using magnetic resonant coupling and electric resonant coupling for stationary electric vehicles, in-motion electric vehicles, medical equipments, space equipments, IoT devices and sensors. His research interests also include fusion of dynamic wireless power transfer for electric vehicle and solar power to reduce CO2. He is a member of the IEEE, IEEJ, IEICE and the JSAE. He received the First Prize Paper Award from the IEEE Transactions on Power Electronics in 2017.