Fundamentals of Power Electronics
Fundamentals of Power Electronics 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.
2020
Fundamentals of Power Electronics 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. In addition, this edition includes many new examples, illustrations, and exercises to guide students and professionals through the intricacies of power electronics design.
The contens of the book include 5 parts, 20 chapters:
1. Introduction
+ Part I. Converters in Equilibrium
2. Principles of steady state converter analysis
3. Steady-state equivalent circuit modeling, losses, and efficiency
4. Switch realization
5. The discontinuous conduction mode
6. Converter circuits
+ Part II. Converter Dynamics and Control
7. AC modeling
8. Converter transfer functions
9. Controller design
10. Ac and dc equivalent circuit modeling of the discontinuous conduction mode
11. Current programmed control
+ Part III. Magnetics
12. Basic magnetics theory
13. Filter inductor design
14. Transformer design
+ Part IV. Modern Rectifiers, and Power System Harmonics
15. Power and harmonics in nonsinusoidal systems
16. Line-commutated rectifiers
17. The ideal rectifier
18. Low harmonic rectifier modeling and control
+ Part V. Resonant converters
19. Resonant Conversion
20. Quasi-resonant converters
Erickson, Robert W; Dragan Maksimovic. Fundamentals of Power Electronics. Springer, 2020.
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