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ISBN
:
9788126510900
Publisher
:
Wiley India Pvt Ltd
Subject
:
Environmental Science, Engineering & Technology
Binding
:
Paperback
Pages
:
824
Year
:
2007
₹
849.0
₹
696.0
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View DetailsDescription
The text includes cohesive presentation of power electronics fundamentals for applications and design in the power range of 500 kW or less. It describes a variety of practical and emerging power electronic converters made feasible by the new generation of power semiconductor devices. Topics included in this book are an expanded discussion of diode rectifiers and thyristor converters as well as chapters on heat sinks, magnetic components which present a step-by-step design approach and a computer simulation of power electronics which introduces numerical techniques and commonly used simulation packages such as PSpice, MATLAB and EMTP. Key Features Easy to follow step-by-step in depth treatment of all the theory. Computer simulation chapter describes the role of computer simulations in power electronics. Examples and problems based on Pspice and MATLAB are included. Introductory chapter offers a review of basic electrical and magnetic circuit concepts. A new CD-ROM contains the following: Over 100 of new problems of varying degrees of difficulty for homework assignments and self-learning. PSpice-based simulation examples, which illustrate basic concepts and help in design of converters. A newly-developed magnetic component design program that demonstrates design trade-offs. PowerPoint-based slides, which will improve the learning experience and the ease of using the book About The AuthorNed Mohan is the Oscar A. Schott Professor of Power Electronics at the University of Minnesota, He has numerous patents and publications in this field. He is a Fellow of the IEEE. Tore M. Undeland is a professor in Power Electronics in the Faculty of Information Technology, Mathematics and Electrical Engineering at the Norwegian University of Science and Technology, NTNU, Trondheim, Norway. He is also a scientific advisor to the SINTEF Energy Research. William P. Robbins is a professor in the Department of Electrical and Computer Engineering at the University of Minnesota. Prior to joining the University of Minnesota, he was a research engineer at the Boeing Company. Table Of Contents Part I Introduction Power Electronic Systems Overview of Power Semiconductor Switches Review of Basic Electrical and Magnetic Circuit Concepts Computer Simulation of Power Electronic Converters and Systems Part II Generic Power Electronic Circuits Line-Frequency Diode Rectifiers: Line-Frequency ac Uncontrolled dc. Line-Frequency Phase-Controlled Rectifiers and Inverters: Line-Frequency ac Controlled dc dc-dc Switch-Mode Converters Switch-Mode dc-ac Inverters: dc Sinusoidal ac Resonant Converters: Zero-Voltage and/or Zero-Current Switchings Part III Power Supply Applications Switching dc Power Supplies Power Conditioners and Uninterruptible Power Supplies Part IV Motor Drive Applications Introduction to Motor Drives DC Motor Drives Induction Motor Drives Synchronous Motor Drives Part V Other Applications Residential and Industrial Applications Electric Utility Applications Optimizing the Utility Interface with Power Electronic Systems Part VI Semiconductor Devices Basic Semiconductor Physics Power Diodes Bipolar Junction Transistors Power MOSFETs Thyristors Gate Turn-Off Thyristors Insulated Gate Bipolar Transistors Emerging Devices and Circuits Part VII Practical Converter Design Considerations Snubber Circuits Gate and Base Drive Circuits Component Temperature Control and Heat Sinks Design of Magnetic Components Index
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