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About this book
Soft-switching PWM full-bridge converters have been widely used in medium-to-high power DC-DC conversions for topological simplicity, easy control and high effi ciency. Early works on soft-switching PWM full-bridge converter by many researchers included various topologies and modulation strategies. However, these works were scattered, and the relationship among these topologies and modulation strategies had not been revealed. This book intends to describe systematically the soft-switching techniques for pulse-width modulation (PWM) full-bridge converters, including the topologies, control and design, and it reveals the relationship among the various topologies and PWM strategies previously proposed by other researchers. The book not only presents theoretical analysis, but also gives many detailed design examples of the converters.
- Describes the soft-switching techniques for pulse-width modulation (PWM) full-bridge
converters systematically - Covers topologies, control and design, from the basics, through to applications and
development - Deliberates the soft-switching PMW control technique rather than the standard PWM
control technique - Presents detailed theoretical analysis with design examples for various possible
variations to the full-bridge topology using the soft-switching technique
Soft-Switching PWM Full-Bridge Converters: Topologies, Control, and Design is an essential and valuable reference for graduate students and academics majoring in power electronics and power supply design engineers. Senior undergraduate students majoring in electrical engineering and automation engineering would also fi nd this book useful.
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Information
Table of contents
- Cover
- Title Page
- Copyright
- About the Author
- Preface
- Acknowledgment
- List of Abbreviations
- Chapter 1: Topologies and Operating Principles of Basic Full-Bridge Converters
- Chapter 2: Theoretical Basis of Soft Switching for PWM Full-Bridge Converters
- Chapter 3: Zero-Voltage-Switching PWM Full-Bridge Converters
- Chapter 4: Zero-Voltage-Switching PWM Full-Bridge Converters with Auxiliary-Current-Source Networks
- Chapter 5: Zero-Voltage-and-Zero-Current-Switching PWM Full-Bridge Converters
- Chapter 6: Zero-Voltage-Switching PWM Full-Bridge Converters with Clamping Diodes
- Chapter 7: Zero-Voltage-Switching PWM Full-Bridge Converters with Current Transformer to Reset the Clamping Diode Currents
- Chapter 8: Zero-Voltage-Switching PWM Full-Bridge Converters with Current-Doubler Rectifiers
- Appendix: Maximum and Minimum Values of the Filter Inductor Current when a CDR Full-Bridge Converter Operates in DCM and The Value of the Critical Output Current at the DCM Boundary
- Bibliography
- Index
- End User License Agreement