Handbook of Power Systems Engineering with Power Electronics Applications

Author: Yoshihide Hase  

Publisher: John Wiley & Sons Inc‎

Publication year: 2012

E-ISBN: 9781118443248

P-ISBN(Hardback):  9781119952848

Subject: TM7 Transmission and distribution engineering, power grids and power system

Language: ENG

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Description

Formerly known as Handbook of Power System Engineering, this second edition provides rigorous revisions to the original treatment of systems analysis together with a substantial new four-chapter section on power electronics applications. Encompassing a whole range of equipment, phenomena, and analytical approaches, this handbook offers a complete overview of power systems and their power electronics applications, and presents a thorough examination of the fundamental principles, combining theories and technologies that are usually treated in separate specialised fields, in a single unified hierarchy.

Key features of this new edition:

  • Updates throughout the entire book with new material covering applications to current topics such as brushless generators, speed adjustable pumped storage hydro generation, wind generation, small-hydro generation, solar generation,  DC-transmission, SVC, SVG (STATCOM), FACTS, active-filters, UPS and advanced railway traffic applications
  • Theories of electrical phenomena ranging from DC and power frequency to lightning-/switching-surges, and insulation coordination now with reference to IEC Standards 2010
  • New chapters presenting advanced theories and technologies of power electronics circuits and their control theories in combination with various characteristics of power systems as well as induction-generator/motor driving systems
  • Practical engineering technologies of generating plants, transmission lines, sub-stations, load systems and their combined network that includes schemes of high voltage primary circuits, power system control and protection

A comprehensive reference for those wishing to gain knowledge in every aspect of power system engineering, this book is suited to practising engineers in power electricity-related industries and graduate level power engineering students.

Chapter

CONTENTS

pp.:  1 – 9

PREFACE

pp.:  9 – 23

ACKNOWLEDGEMENTS

pp.:  23 – 25

ABOUT THE AUTHOR

pp.:  25 – 27

INTRODUCTION

pp.:  27 – 29

2 SYMMETRICAL COORDINATE METHOD (SYMMETRICAL COMPONENTS)

pp.:  31 – 59

3 FAULT ANALYSIS BY SYMMETRICAL COMPONENTS

pp.:  59 – 83

4 FAULT ANALYSIS OF PARALLEL CIRCUIT LINES (INCLUDING SIMULTANEOUS DOUBLE CIRCUIT FAULT)

pp.:  83 – 99

5 PER UNIT METHOD AND INTRODUCTION OF TRANSFORMER CIRCUIT

pp.:  99 – 121

6 THE α–β–0 COORDINATE METHOD (CLARKE COMPONENTS) AND ITS APPLICATION

pp.:  121 – 157

7 SYMMETRICAL AND α–β–0 COMPONENTS AS ANALYTICAL TOOLS FOR TRANSIENT PHENOMENA

pp.:  157 – 175

8 NEUTRAL GROUNDING METHODS

pp.:  175 – 183

9 VISUAL VECTOR DIAGRAMS OF VOLTAGES AND CURRENTS UNDER FAULT CONDITIONS

pp.:  183 – 199

10 THEORY OF GENERATORS

pp.:  199 – 213

11 APPARENT POWER AND ITS EXPRESSION IN THE 0–1–2 AND d–q–0 DOMAINS

pp.:  213 – 271

12 GENERATING POWER AND STEADY-STATE STABILITY

pp.:  271 – 281

13 THE GENERATOR AS ROTATING MACHINERY

pp.:  281 – 293

14 TRANSIENT/DYNAMIC STABILITY, P–Q–V CHARACTERISTICS AND VOLTAGE STABILITY OF A POWER SYSTEM

pp.:  293 – 311

15 GENERATOR CHARACTERISTICS WITH AVR AND STABLE OPERATION LIMIT

pp.:  311 – 331

16 OPERATING CHARACTERISTICS AND THE CAPABILITY LIMITS OF GENERATORS

pp.:  331 – 349

17 R–X COORDINATES AND THE THEORY OF DIRECTIONAL DISTANCE RELAYS

pp.:  349 – 383

18 TRAVELLING-WAVE (SURGE) PHENOMENA

pp.:  383 – 409

19 SWITCHING SURGE PHENOMENA BY CIRCUIT-BREAKERS AND LINE SWITCHES

pp.:  409 – 441

20 OVERVOLTAGE PHENOMENA

pp.:  441 – 489

21 INSULATION COORDINATION

pp.:  489 – 505

22 WAVEFORM DISTORTION AND LOWER ORDER HARMONIC RESONANCE

pp.:  505 – 561

23 POWER CABLES AND POWER CABLE CIRCUITS

pp.:  561 – 571

24 APPROACHES FOR SPECIAL CIRCUITS

pp.:  571 – 603

25 THEORY OF INDUCTION GENERATORS AND MOTORS

pp.:  603 – 621

26 POWER ELECTRONIC DEVICES AND THE FUNDAMENTAL CONCEPT OF SWITCHING

pp.:  621 – 659

27 POWER ELECTRONIC CONVERTERS

pp.:  659 – 681

28 POWER ELECTRONICS APPLICATIONS IN UTILITY POWER SYSTEMS AND SOME INDUSTRIES

pp.:  681 – 725

APPENDIX A – MATHEMATICAL FORMULAE

pp.:  725 – 777

APPENDIX B – MATRIX EQUATION FORMULAE

pp.:  777 – 781

ANALYTICAL METHODS INDEX

pp.:  781 – 787

COMPONENTS INDEX

pp.:  787 – 789

SUBJECT INDEX

pp.:  789 – 793

LastPages

pp.:  793 – 798

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