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Voltage Stability Of Electric Power Systems 1st Edition Thierry Van Cutsem

  • SKU: BELL-4192860
Voltage Stability Of Electric Power Systems 1st Edition Thierry Van Cutsem
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Voltage Stability Of Electric Power Systems 1st Edition Thierry Van Cutsem instant download after payment.

Publisher: Springer US
File Extension: PDF
File size: 6.12 MB
Pages: 378
Author: Thierry Van Cutsem, Costas Vournas (auth.)
ISBN: 9780387755359, 9780387755366, 0387755357, 0387755365
Language: English
Year: 2008
Edition: 1

Product desciption

Voltage Stability Of Electric Power Systems 1st Edition Thierry Van Cutsem by Thierry Van Cutsem, Costas Vournas (auth.) 9780387755359, 9780387755366, 0387755357, 0387755365 instant download after payment.

Voltage Stability of Electric Power Systems presents a clear description of voltage instability and collapse phenomena. It proposes a uniform and coherent theoretical framework for analysis and covers state-of-the-art methods. The book describes practical methods that can be used for voltage security assessment and offers a variety of examples. This is a first attempt to condense the technical papers and reports on this subject into a single, coherent, and theoretically sound presentation.

Transmission, generation, and load aspects of the voltage instability problem are treated in detail, and a comprehensive power system model for use in voltage stability analysis is developed and explained. Notions and concepts from nonlinear system theory are presented in a tutorial manner for the use of those new to the field. Loadability, sensitivity, and bifurcation analysis of voltage stability are introduced and treated in depth. Voltage instability mechanisms are classified and minutely examined, together with the countermeasures that can be used to avoid them. In addition, voltage security criteria and methods are reviewed, analyzed and illustrated through realistic computer results.

Voltage Stability is a relatively recent and challenging problem in Power Systems Engineering. It is gaining in importance as the trend of operating power systems closer to their limits continues to increase.

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