A Real-Time Simulation Platform for Power System Operation

Publication: Research - peer-reviewArticle in proceedings – Annual report year: 2010

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This paper describes the real-time digital simulation platform that can be used for power system operation, analysis, and power system modeling. This particular platform gives grid operators, planners and researchers the opportunity to observe how a power system behaves and can be used to demonstrate modeling, system disturbances of various types, and proper recovery actions, as well as to illustrate complex power system concepts. The Kundur power system consists of two fully symmetrical areas linked together by two 230kV lines is modeled by using RSCAD in order to carry out simulations in real time. Various phenomena commonly encountered when dealing with the two-area system is studied. Despite its small size, it mimics very closely the behavior of typical systems in actual operation. The electromagnetic transient type of simulation made in RSCAD enables the study of fast and detailed phenomena like single-phase faults in the two-area network and to observe their effects on a larger time scale. Also, the case study of 11 bus system with 5 generators has been also used and the results are presented.
Original languageEnglish
TitleProceedings of the International Power & Energy Conference (IPEC 2010)
PublisherIEEE
Publication date2010
ISBN (print)978-1-4244-7399-1
DOIs
StatePublished

Conference

Conference2010 9th International Power and Energy Conference
Number9
CountrySingapore
CitySingapore
Period27/10/1029/10/10

Bibliographical note

Copyright 2010 IEEE. Personal use of this material is permitted. However, permission to reprint/republish this material for advertising or promotional purposes or for creating new collective works for resale or redistribution to servers or lists, or to reuse any copyrighted component of this work in other works must be obtained from the IEEE.

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Keywords

  • Transient Stability, Electromagnetic Transient, RSCAD, RTDS, Hardware-in-the-Loop(HIL)
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