Power Quality: VAR Compensation in Power Systems / Edition 1

Power Quality: VAR Compensation in Power Systems / Edition 1

ISBN-10:
1420064800
ISBN-13:
9781420064803
Pub. Date:
08/13/2008
Publisher:
Taylor & Francis
ISBN-10:
1420064800
ISBN-13:
9781420064803
Pub. Date:
08/13/2008
Publisher:
Taylor & Francis
Power Quality: VAR Compensation in Power Systems / Edition 1

Power Quality: VAR Compensation in Power Systems / Edition 1

$180.0
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Overview

Both deregulation in the electrical supply industry and the creation of new electricity markets present electric utility companies with the challenge of becoming more efficient without compromising quality of service.

Providing new solutions for this newly deregulated paradigm, Power Quality: VAR Compensation in Power Systems presents comprehensive coverage of power quality, harmonics, and static var compensators in one single volume. The book explains how to ensure that power quality is not affected by the harmonics generated by power electronic equipment and explains how to reduce labor costs and increase reliability of supply by employing a single pole autoreclosing scheme. It also addresses how to analyze frequency response of current transformers and voltage transformers while measuring harmonics.

Based on the authors’ extensive experience in the electric supply industry, Power Quality enables engineers to meet the demands of increased loads, strengthen their transmission systems, and ensure reliable electric supply.


Product Details

ISBN-13: 9781420064803
Publisher: Taylor & Francis
Publication date: 08/13/2008
Pages: 304
Product dimensions: 6.30(w) x 9.40(h) x 0.80(d)

About the Author

Vedam, R. Sastry; Sarma, Mulukutla S.

Table of Contents

Power Quality. Static var Compensators. Control of Static Var Compensators. Harmonics. Utility Harmonic Regulations and Standards. Harmonic Filters. Computational Tools and Programs for the Design and Analysis of Static var Compensators and Filters. Measurement of Harmonics and Flicker. Reactors. Capacitors. Reactive Power Optimization in Power Systems. Conclusions.
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