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Fundamentals of Power Electronics 3rd ed. 2020


Fundamentals of Power Electronics 3rd ed. 2020

Hardback by Erickson, Robert W.; Maksimovic, Dragan

Fundamentals of Power Electronics

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£67.99

ISBN:
9783030438791
Publication Date:
16 Aug 2020
Edition/language:
3rd ed. 2020 / English
Publisher:
Springer Nature Switzerland AG
Pages:
1084 pages
Format:
Hardback
For delivery:
Estimated despatch 21 - 22 May 2024
Fundamentals of Power Electronics

Description

Fundamentals of Power Electronics, Third 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: new material on switching loss mechanisms and their modeling; wide bandgap semiconductor devices; a more rigorous treatment of averaging; explanation of the Nyquist stability criterion; incorporation of the Tan and Middlebrook model for current programmed control; a new chapter on digital control of switching converters; major new chapters on advanced techniques of design-oriented analysis including feedback and extra-element theorems; average current control; new material on input filter design; new treatment of averaged switch modeling, simulation, and indirect power;and sampling effects in DCM, CPM, and digital control. Fundamentals of Power Electronics, Third 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 analog and digital electronics.

Contents

Principles of Steady State Converter Analysis.- Steady-State Equivalent Circuit Modeling, Losses, and Efficiency.- Switch Realization.- The Discontinuous Conduction Mode.- Converter Circuits.- Converter Dynamics and Control.- AC Equivalent Circuit Modeling.- Converter Transfer Functions.- Controller Design.- Input Filter Design. - AC and DC Equivalent Circuit Modeling of the Discontinuous Conduction Mode.- Current Programmed Control.- Magnetics.- Basic Magnetics Theory.- Inductor Design.- Transformer Design.- Modern Rectifiers and Power System Harmonics.- Power and Harmonics in Nonsinusoidal Systems.- Line-Commutated Rectifiers.- Pulse-Width Modulated Rectifiers.- Resonant Converters.- Resonant Conversion.- Soft Switching.

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