9780136919902-0136919901-Power Systems Analysis

Power Systems Analysis

ISBN-13: 9780136919902
ISBN-10: 0136919901
Edition: 2
Author: Arthur Bergen, Vijay Vittal
Publication date: 1999
Publisher: Pearson
Format: Paperback 632 pages
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Book details

ISBN-13: 9780136919902
ISBN-10: 0136919901
Edition: 2
Author: Arthur Bergen, Vijay Vittal
Publication date: 1999
Publisher: Pearson
Format: Paperback 632 pages

Summary

Power Systems Analysis (ISBN-13: 9780136919902 and ISBN-10: 0136919901), written by authors Arthur Bergen, Vijay Vittal, was published by Pearson in 1999. With an overall rating of 4.4 stars, it's a notable title among other Electrical & Electronics (Engineering) books. You can easily purchase or rent Power Systems Analysis (Paperback) from BooksRun, along with many other new and used Electrical & Electronics books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $20.94.

Description

This is the first book on power system analysis to explore the major changes in the structure and operation of the electric utility industry, and to show how power system operation will be affected by the new changes. It reflects the trends in state-of-the-art, computer-based power system analysis and shows how to apply each modern analysis tool in designing and improving an expansion of an existing power system. KEY FEATURES: Features a computer-based design example (carried out from chapter-to-chapter) which uses all the analysis. As the example develops, readers determine the parameter values for a proposed transmission system upgrade to support load growth and a new steel mill being located in the area; convert all the parameters to per unit -- the preferred choice of units for system analysis; determine typical parameters for the generators in the system being designed; develop the admittance matrix and the impedance matrix for the system being designed; conduct the power flow and check the designed system for possible violations, and appropriately modify the design; and conduct a contingency analysis on the designed system; analyze the behavior of the designed system under faulted condition; continue the design with a selection of relay settings to protect the system in the event of these faulted conditions; and perform a transient stability simulation on the system and verify the ability of the system to remain stable. For engineers working in the electric utility industry.

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