Analysis of Faulted Power Systems
Paul M. Anderson
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Description for Analysis of Faulted Power Systems
Hardcover. Series: IEEE Press Series on Power Engineering. Num Pages: 540 pages. BIC Classification: THRB. Category: (P) Professional & Vocational; (UP) Postgraduate, Research & Scholarly; (UU) Undergraduate. Dimension: 262 x 178 x 31. Weight in Grams: 1068.
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.
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
Diskette files can now be found by entering in ISBN 978-0780311459 on ... Read more
Show LessProduct Details
Format
Hardback
Publication date
1995
Publisher
I.E.E.E.Press United States
Number of pages
540
Condition
New
Series
IEEE Press Series on Power Engineering
Number of Pages
536
Place of Publication
, United States
ISBN
9780780311459
SKU
V9780780311459
Shipping Time
Usually ships in 7 to 11 working days
Ref
99-50
About Paul M. Anderson
P.M. Anderson has over 40 years of experience in power system engineering and research, power education, technical writing, and research management. His areas of interest are power system analysis, computer applications, and system dynamic performance.
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