
Advanced DC/AC Inverters
Description
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Novel PWM and Multilevel Inverters
The book first covers traditional pulse-width-modulation (PWM) inverters before moving on to new quasi-impedance source inverters and soft-switching PWM inverters. It then examines multilevel DC/AC inverters, which have overcome the drawbacks of PWM inverters and provide greater scope for industrial applications. The authors propose four novel multilevel inverters: laddered multilevel inverters, super-lift modulated inverters, switched-capacitor inverters, and switched-inductor inverters. With simple structures and fewer components, these inverters are well suited for renewable energy systems.
Get the Best Switching Angles for Any Multilevel Inverter
A key topic for multilevel inverters is the need to manage the switching angles to obtain the lowest total harmonic distortion (THD). The authors outline four methods for finding the best switching angles and use simulation waveforms to verify the design. The optimum switching angles for multilevel DC/AC inverters are also listed in tables for quick reference.
Application Examples of DC/AC Inverters in Renewable Energy Systems
Highlighting the importance of inverters in improving energy saving and power-supply quality, the final chapter of the book supplies design examples for applications in wind turbine and solar panel energy systems. Written by pioneers in advanced conversion and inversion technology, this book guides readers in designing more effective DC/AC inverters for use in renewable energy systems.
Reviews / Votes
"The text offers theoretical concepts, diagrams, summarizing tables, simulation and experimental results, and design examples for students, researchers, and engineers willing to learn from experts on how to design and implement inverters for renewable energy systems. ... valuable for industry professionals willing to know about power inverters cutting-edge technology in renewable energy systems."-Fernando A Silva, IEEE INDUSTRIAl ELECTRONICS MAGAZINE, DECEMBER 2013 "The text offers theoretical concepts, diagrams, summarizing tables, simulation and experimental results, and design examples for students, researchers, and engineers willing to learn from experts on how to design and implement inverters for renewable energy systems. ... valuable for industry professionals willing to know about power inverters cutting-edge technology in renewable energy systems."-Fernando A Silva, IEEE INDUSTRIAl ELECTRONICS MAGAZINE, DECEMBER 2013
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Persons
Dr. Hong Ye, Ph.D., is a research fellow in the School of Biological Sciences at Nanyang Technological University (NTU), Singapore. She is a member of the IEEE and has coauthored 13 books. Dr. Ye has published more than 80 technical papers in IEEE transactions, IEE/IET proceedings, and other international journals, as well as in various international conferences. Her research interests include power electronics and conversion technologies, signal processing, operations research, and structural biology.
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