Fundamentals of Electric Power Engineering (gnv64)
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Fundamentals of Electric Power Engineering - From Electromagnetics to Power Systems
Fundamentals of Electric Power Engineering - From Electromagnetics to Power Systems (gnv64).pdf -
Fundamentals of Electric Power Engineering - From Electromagnetics to Power Systems (gnv64).pdf -
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Description
Fundamentals of Electric Power Engineering - From Electromagnetics to Power Systems
by Massimo Ceraolo, Davide Poli
Wiley-IEEE Press | April 2014 | ISBN-10: 1118679695 | PDF | 552 pages | 20 mb
http://www.amazon.com/Fundamentals-Electric-Power-Engineering-Electromagnetics/dp/1118679695
This book serves as a tool for any engineer who wants to learn about circuits, electrical machines and drives, power electronics, and power systems basics
From time to time, engineers find they need to brush up on certain fundamentals within electrical engineering. This clear and concise book is the ideal learning tool for them to quickly learn the basics or develop an understanding of newer topics.
Fundamentals of Electric Power Engineering: From Electromagnetics to Power Systems helps nonelectrical engineers amass power system information quickly by imparting tools and trade tricks for remembering basic concepts and grasping new developments. Created to provide more in-depth knowledge of fundamentals—rather than a broad range of applications only—this comprehensive and up-to-date book:
- Covers topics such as circuits, electrical machines and drives, power electronics, and power system basics as well as new generation technologies
- Allows nonelectrical engineers to build their electrical knowledge quickly
- Includes exercises with worked solutions to assist readers in grasping concepts found in the book
- Contains “in-depth†side bars throughout which pique the reader’s curiosity
Fundamentals of Electric Power Engineering is an ideal refresher course for those involved in this interdisciplinary branch.
About the Authors
MASSIMO CERAOLO received his MSc degree in Electrical Engineering from the University of Pisa, with honors, in 1985. He has been Full Professor of Electric Power Systems since 2002. He has taught Networks, Components and Electric Systems at the University of Pisa, where he currently teaches Electric and Hybrid Vehicles. He has authored over one hundred scientific papers in several fields of electrical engineering.
DAVIDE POLI received his MSc degree, with honors, and his PhD in Electrical Engineering from the University of Pisa, in 1997 and in 2001. He has been Assistant Professor of Electric Power Systems since 2001. Currently, he teaches Power Quality and Power System Reliability at the University of Pisa. He has authored eighty scientific papers in the field of power systems.
CONTENTS
PREFACE xv
ABOUT THE AUTHORS xix
PART I PRELIMINARY MATERIAL 1
1 Introduction 3
2 The Fundamental Laws of Electromagnetism 19
PART II ELECTRIC CIRCUIT CONCEPT AND ANALYSIS 43
3 Circuits as Modelling Tools 45
4 Techniques for Solving DC Circuits 83
5 Techniques for Solving AC Circuits 131
6 Three-Phase Circuits 191
PART III ELECTRIC MACHINES AND STATIC CONVERTERS 213
7 Magnetic Circuits and Transformers 215
8 Fundamentals of Electronic Power Conversion 239
9 Principles of Electromechanical Conversion 291
10 DC Machines and Drives and Universal Motors 309
11 Synchronous Machines and Drives 337
12 Induction Machines and Drives 373
PART IV POWER SYSTEMS BASICS 409
13 Low-Voltage Electrical Installations 411
14 Electric Shock and Protective Measures 439
15 Large Power Systems: Structure and Operation 465
Appendix: Transmission Line Modelling and Port-Based Circuits 501
SELECTED REFERENCES 515
ANSWERS TO THE PROPOSED EXERCISES 519
INDEX 529
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