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Analysis of Faulted Power Systems

Analysis of Faulted Power Systems

Anderson, P. M. 

IEEE Press Series on Power Engineering
Sponsored by the IEEE Power Engineering Society
Publication Date: July 1995
Wiley-IEEE Press
Number of Pages: 540
Edition: 1
Subject Category: Interscience Book online

Hardcover   Price: US $145.00   ISBN: 0780311450   » Buy at Wiley.com

Before buying this book, please check with your librarian or information professional. A copy may already be available to you at no additional cost.

» Sample Chapter
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» Preface (PDF)

» Detailed Table of
   Contents (PDF)

Abstract
This classic text offers you the key to understanding short circuits, open conductors and other problems relating to electric power systems that are subject to unbalanced conditions. Using the method of symmetrical components, acknowledged expert Paul M. Anderson provides comprehensive guidance for both finding solutions for faulted power systems and maintaining protective system applications. You'll learn to solve advanced problems, while gaining a thorough background in elementary configurations. Features you'll put to immediate use: Numerous examples and problems, clear, concise notation, analytical simplifications, Matrix methods applicable to digital computer technology, Extensive appendices.


Features you’ll put to immediate use include:

  • Numerous examples and problems
  • Clear, concise notation
  • Analytical simplifications
  • Matrix methods applicable to digital computer technology
  • Extensive appendices
  • Software developed especially for solving the many problems associated with the matrix of complex numbers

Table of Contents
Preface to the IEEE Reissued Edition.

Preface.

List of Symbols.

General Considerations.

Symmetrical Components.

Analysis of Unsymmetrical Faults: Three-Component Method.

Sequence Impedance of Transmission Lines.

Sequence Capacitance of Transmission Lines.

Sequence Impedance of Machines.

Sequence Impedance of Transformers.

Changes in Symmetry.

Simultaneous Faults.

Analytical Simplications.

Computer Solution Methods Using the Admittance Matrix.

Computer Solution Methods Using the Impedance Matrix.

Appendix A: Matrix Algebra.

Appendix B: Line Impedance Tables.

Appendix C: Trigonometric Identities for Three-Phase Systems.

Appendix D: Self Inductance of a Straight Finite Cylindrical Wire.

Appendix E: Solved Examples.

Appendix F: \Δ-Y Transformations.

Bibliography.

Index.

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