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POWER SYSTEM STABILITY: MODELLING, ANALYSIS AND CONTROL

POWER SYSTEM STABILITY: MODELLING, ANALYSIS AND CONTROL

POWER SYSTEM STABILITY: MODELLING, ANALYSIS AND CONTROL
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POWER SYSTEM STABILITY: MODELLING, ANALYSIS AND CONTROL Hardback - 2015

by Abdelhay A. Sallam; Om P. Malik

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New/New. Brand New Original US Edition, Perfect Condition. Printed in English. Excellent Quality, Service and customer satisfaction guaranteed!
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Details

  • Title POWER SYSTEM STABILITY: MODELLING, ANALYSIS AND CONTROL
  • Author Abdelhay A. Sallam; Om P. Malik
  • Binding Hardback
  • Edition International ed
  • Condition New
  • Pages 472
  • Volumes 1
  • Language ENG
  • Publisher Institution of Engineering & Technology
  • Publication date 2015-07-01
  • Bookseller's Inventory # BIBNNA-235224
  • ISBN 9781849199445 / 1849199442
  • Weight 1.9 lbs (0.86 kg)
  • Dimensions 9.4 x 6.4 x 1.1 in (23.88 x 16.26 x 2.79 cm)
  • Category Technology & Industrial Arts
  • Dewey Decimal Code 621.31
  • Quantity available 1

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Reader reviews for POWER SYSTEM STABILITY: MODELLING, ANALYSIS AND CONTROL

From the publisher

To ensure stable operation of a power system, it is necessary to analyse the power system performance under various operating conditions. Analysis includes studies such as power flow and both steady-state and transient stability. To perform such studies requires knowledge about the models used to represent the various components that constitute an integrated power system. In situations where there is a risk of loss of stability, it is necessary to apply controls that can ensure stable and uninterrupted supply of electricity following a disturbance.

The subject of stability thus encompasses modelling, computation of load flow in the transmission grid, stability analysis under both steady-state and disturbed conditions, and appropriate controls to enhance stability. All these topics are covered in this book, providing a comprehensive treatment of the overall subject of stability of power systems. Topics covered include modelling of the synchronous machine; the synchronous machine connected to power systems; modelling of transformers, transmission lines and loads; power flow analysis; optimal power flow; small signal stability; transient stability; transient energy function methods; artificial intelligent techniques; power system stabilizers; series compensation; shunt compensation; compensation devices; and recent technologies.

The subject matter is covered at a level that is suitable for students, scientists and engineers involved in the study, design, analysis and control of power systems.

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