Soft-switching technology for three-phase power electronics converters /

"This book focuses on soft switching three-phase converters for applications such as renewable energy and distribution power systems, AC power sources, UPS, motor drives, battery chargers, and more. It begins with an introduction to fundamental of soft switching technology for three-phase conve...

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Bibliographic Details
Main Authors: Xu, Dehong, 1961-
Corporate Authors: Wiley Online Library (Online service)
Group Author: Li, Rui; Wu, Yuying; Deng, Jinyi; He, Ning
Published: John Wiley & Sons, Inc.,
Publisher Address: Hoboken, New Jersey :
Publication Dates: [2022]
Literature type: eBook
Language: English
Series: IEEE Press series on power and energy systems
Subjects:
Online Access: https://onlinelibrary.wiley.com/doi/book/10.1002/9781119602545
Summary: "This book focuses on soft switching three-phase converters for applications such as renewable energy and distribution power systems, AC power sources, UPS, motor drives, battery chargers, and more. It begins with an introduction to fundamental of soft switching technology for three-phase conversion. The author provides basic knowledge of soft-switching technology to give readers necessary background information for the following subjects. The book goes on to describe applying soft-switching technology to three-phase rectifiers, then three-phase grid inverters. The author provides porotypes and expermients of each. Finally, the book investigates the impact of silicon carbide (SiC) devices on soft-switching three converters, studying the improvement of efficiency and power density by introducing SiC to soft-switching three-phase converters"--
Item Description: Description based on print version record.
Carrier Form: 1 online resource (496 pages).
Also available in print.
Bibliography: Includes bibliographical references and index.
ISBN: 9781119602545 (electronic book)
9781119602514
Index Number: TK7872
CLC: TM46
Contents: Electric power systems: design and analysis, Revised printing / Mohamed E. El-Hawary -- Power system stability / Edward W. Kimbark -- Analysis of faulted power systems / Paul M. Anderson.