Power Electronics: Circuit Analysis and Design

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Power Electronics: Circuit Analysis and Design

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Power Electronics: Circuit Analysis and Design
Power Electronics: Circuit Analysis and Design


    This fully updated textbook provides complete coverage of electrical circuits and introduces students to the field of energy conversion technologies, analysis and design. Chapters are designed to equip students with necessary background material in such topics as devices, switching circuit analysis techniques, converter types, and methods of conversion. The book contains a large number of examples, exercises, and problems to help enforce the material presented in each chapter. A detailed discussion of resonant and soft switching dc-to-dc converters is included along with the addition of new chapters covering digital control, non-linear control, and micro-inverters for power electronics applications. Designed for senior undergraduate and graduate electrical engineering students, this book provides students with the ability to analyze and design power electronic circuits used in various industrial applications.

    A number of methods of analyzing power electronic circuits are discussed and illustrated. Each of these methods has unique advantages and disadvantages. No one method appears to have all of the features necessary for it to become the preferable analysis approach. Thus, the search must continue for the ultimate power electronic circuit analysis technique.

Advances in Renewable Energies and Power Technologies

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Table Of Contents

Complex Frequency-Domain Analysis of Inverter-Fed Induction machines

Analysis of Induction Motor Drives with a Non sinusoidal Supply Voltage Using Fourier Analysis

Analysis and Simplified Representations of a Rectifier-Invert-er Induction Motor Drive

A D-Q Axis Representation of a Parallel AC and DC Power System

Computer-Aided Steady-State Analysis of Thyristor DC Drives on Weak Power Systems

Application of State-Space Techniques to the Steady-State Analysis of Thyristor-Control1ed Single-Phase Induction Motors

The Analysis of Induction Machines Controlled by Series Connected Semiconductor Switches

Analysis and Comparison of Two Types of Sauare-Wave Inverter Drives

Low-Frequency Characterization of Switched DC-DC Converters

A General Unified Approach to Modelling Switching-Converter Power Stages

Method of Multiple Reference Frames Applied to the Analysis of Symmetrical Induction Machinery

Steady State Performance of Inverter Fed Induction Machines by Means of Time Domain Complex Variables

General Analysis of Three-Phase Inverters

Capacitor-Assisted Line-Commutated Converter

Switching Function Representation of Polyphase Inverters

A Theorectical Model for Single-Phase Silicon-Controlled Rectifier Systems

Stability Study of Controlled Rectifiers Using a New Discrete Model

A Method for Harmonic Analysis of Cyclo converters

The Use of Simulation in the Design of an Inverter Drive

Comparison of Computer and Test Results of a Static AC Drive System

Analysis of a Cyc1oconverter-Induction Motor Drive System Allowing for Stator Current Discontinuities


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