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Risk Based Assessment of Subsynchronous Resonance in AC/DC Systems

Author: Atia Adrees; École nationale supérieure des beaux-arts (France)
Publisher: Cham Springer International Publishing Imprint : Springer, 2017.
Series: Springer Theses, Recognizing Outstanding Ph. D. Research.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
This relevant and timely thesis presents the pioneering use of risk-based assessment tools to analyse the interaction between electrical and mechanical systems in mixed AC/DC power networks at subsynchronous frequencies. It also discusses assessing the effect of uncertainties in the mechanical parameters of a turbine generator on SSR in a meshed network with both symmetrical and asymmetrical compensation systems.  Read more...
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Genre/Form: Electronic books
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Atia Adrees; École nationale supérieure des beaux-arts (France)
ISBN: 3319449478 9783319449470 9783319449463 331944946X
OCLC Number: 1058361628
Description: 1 online resource (XX, 218 pages 120 illustrations, 92 illustrations in color.)
Contents: Introduction --
Power System Modelling and SSR Analysis Methods --
Ranking of Generators Based on the Exposure to Subsynchronous Resonance --
Methodology for the Evaluation of Risk of Subsynchronous Resonance --
Influence of Uncertainties in Mechanical Parameters --
Optimal Series Compensation of Lines to Minimize the Exposure of Generators to SSR --
Future Work and Conclusions.
Series Title: Springer Theses, Recognizing Outstanding Ph. D. Research.
Responsibility: by Atia Adrees.

Abstract:

This relevant and timely thesis presents the pioneering use of risk-based assessment tools to analyse the interaction between electrical and mechanical systems in mixed AC/DC power networks at subsynchronous frequencies. It also discusses assessing the effect of uncertainties in the mechanical parameters of a turbine generator on SSR in a meshed network with both symmetrical and asymmetrical compensation systems. The research presented has resulted in 12 publications including three top international journal papers (IEEE Transactions on Power Systems) and nine international conference publications, including two award-winning papers.

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