Analysis of faulted power systems

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...

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Bibliographic Details
Main Author: Anderson, P. M. (Paul M.)
Format: Book
Language:English
Published: New York IEEE Press 1995.
Series:IEEE Press power system engineering series.
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090 |a TK 3226  |b .A55 1995 
100 1 |a Anderson, P. M.  |q (Paul M.) 
245 1 0 |a Analysis of faulted power systems  |c [by] Paul M. Anderson. 
260 |a New York  |b IEEE Press  |c 1995. 
300 |a xix, 513 p.  |b ill.  |c 26 cm. +  |e 2 computer disks (3 1/2 in.) 
490 1 |a IEEE Press power system engineering series. 
500 |a Originally published: Iowa State University Press, 1973. 
504 |a Includes bibliographical references and index. 
505 0 |a 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: [Delta]-Y Transformations -- Bibliography -- Index. 
520 |a 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. 
650 0 |a Short circuits. 
650 0 |a electric circuit analysis. 
650 0 |a Electric power systems  |x Mathematical models. 
830 0 |a IEEE Press power system engineering series. 
999 |a vtls000009120  |c 9314  |d 9314