DocumentCode :
1024433
Title :
Predicting unstable modes in power systems: theory and computations
Author :
Chiang, Hsiao-Dong ; Tong, Jianzhong ; Miu, Karen Nan
Author_Institution :
Sch. of Electr. Eng., Cornell Univ., Ithaca, NY, USA
Volume :
8
Issue :
4
fYear :
1993
fDate :
11/1/1993 12:00:00 AM
Firstpage :
1429
Lastpage :
1437
Abstract :
Prediction of the (critical) unstable mode of a power system due to a fault cleared immediately after the critical clearing time is useful, for example, in transient stability analysis and in relay setting. However, the existing methods of predicting (critical) unstable modes were derived mostly on heuristics and simulations; these methods were derived for the classical power system model. In this paper, theoretical results for predicting unstable modes for general power system models are presented. It is shown that the unstable manifold of the controlling u.e.p. (instead of the coordinate of the controlling u.e.p.) determines the unstable mode. It is also shown that the unstable modes due to different fault-on trajectories with the same type-one controlling u.e.p. are the same. A computational scheme is developed to predict unstable modes for general power system models. To confirm the theoretical results developed in this paper, the scheme has been tested on a 50-generator, 145-bus system with promising results. Also, one application of the unstable mode predictions to transient stability analysis is illustrated
Keywords :
power system stability; power system transients; critical clearing time; fault clearing; fault-on trajectories; power system model; power systems; relay setting; transient stability analysis; unstable modes prediction; Power system analysis computing; Power system faults; Power system modeling; Power system relaying; Power system simulation; Power system stability; Power system transients; Power systems; Predictive models; Transient analysis;
fLanguage :
English
Journal_Title :
Power Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8950
Type :
jour
DOI :
10.1109/59.260942
Filename :
260942
Link To Document :
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