Fundamentals of Power Electronics
Book information
Description
Fundamentals of Power Electronics, Second Edition, is an up-to-date and authoritative text and reference book on power electronics. This new edition retains the original objective and philosophy of focusing on the fundamental principles, models, and technical requirements needed for designing practical power electronic systems while adding a wealth of new material. Improved features of this new edition include: A new chapter on input filters, showing how to design single and multiple section filters; Major revisions of material on averaged switch modeling, low-harmonic rectifiers, and the chapter on AC modeling of the discontinuous conduction mode; New material on soft switching, active-clamp snubbers, zero-voltage transition full-bridge converter, and auxiliary resonant commutated pole. Also, new sections on design of multiple-winding magnetic and resonant inverter design; Additional appendices on Computer Simulation of Converters using averaged switch modeling, and Middlebrook's Extra Element Theorem, including four tutorial examples; and Expanded treatment of current programmed control with complete results for basic converters, and much more. This edition includes many new examples, illustrations, and exercises to guide students and professionals through the intricacies of power electronics design. Fundamentals of Power Electronics, Second Edition, is intended for use in introductory power electronics courses and related fields for both senior undergraduates and first-year graduate students interested in converter circuits and electronics, control systems, and magnetic and power systems. It will also be an invaluable reference for professionals working in power electronics, power conversion, and analogue and digital electronics. Fundamentals Of Power Electronics Contents Preface Converters in Equilibrium Converter Dynamics & Control Magnetics Modern Rectifiers & Power System Harmonics Resonant Converters 01 Introduction 02 Principles of Steady-State Converter Analysis 03 Steady-State Equivalent Circuit Modeling, Losses, and Efficiency 04 Switch Realization 05 The Discontinuous Conduction Mode 06 Converter Circuits 07 AC Equivalent Circuit Modeling 08 Converter Transfer Functions 09 Controller Design 10 Input Filter Design 11 AC and DC Equivalent Circuit Modeling of the Discontinuous Conduction Mode 12 Current Programmed Control 13 Basic Magnetics Theory Magnetics 14 Inductor Design 15 Transformer Design 16 Power and Harmonics in Nonsinusoidal Systems 17 Line-Commutated Rectifiers 18 Pulse-Width Modulated Rectifiers 19 Resonant Conversion 20 Soft Switching Appendices Appendix A Appendix B Appendix C Appendix D Index
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