DocumentCode :
1872950
Title :
Transient stability indices from a hybrid approach
Author :
Padilha, A. ; Denis, E.F.
Author_Institution :
UNESP-Ilha Solteira, Ilha Solteira, Brazil
Volume :
2
fYear :
2001
fDate :
2001
Abstract :
This paper deals with a hybrid method for transient stability analysis combining time domain simulation and a direct method. Nowadays, the step-by-step simulation is the best available tool for allowing the uses of detailed models and for providing reliable results. The main limitation of this approach involves the large time of computational simulations and the absence of stability margin. On the other hand, direct methods, that demand less CPU time, did not show ample reliability and applicability. The best way seems to be using hybrid solutions, in which a direct method is incorporated in a time domain simulation tool. This work has studied a direct method using the transient potential and kinetic energy of the critical machine only. In this paper the critical machine is identified by a fast and efficient method, and the proposal is new for getting stability margins from hybrid approaches. Results from systems, like the 16-machine system, show stability indices to dynamic security assessment
Keywords :
power system security; power system simulation; power system transient stability; time-domain analysis; computational simulations; contingency screening; critical machine; direct method; dynamic security assessment; fault severity; hybrid approaches; hybrid solutions; kinetic energy; reliability; stability margin absence; stability margins; step-by-step simulation; time domain simulation; transient potential; transient stability analysis; transient stability indices; trapezoidal rule; Computational modeling; Hybrid power systems; Kinetic energy; Potential energy; Power system dynamics; Power system security; Power system simulation; Power system stability; Power system transients; Proposals;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Tech Proceedings, 2001 IEEE Porto
Conference_Location :
Porto
Print_ISBN :
0-7803-7139-9
Type :
conf
DOI :
10.1109/PTC.2001.964795
Filename :
964795
Link To Document :
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