Title :
Probabilistic approach for fault-section estimation in power systems based on a refined genetic algorithm
Author :
Wen, F.S. ; Chang, C.S.
Author_Institution :
Dept. of Electr. Eng., Nat. Univ. of Singapore, Singapore
fDate :
3/1/1997 12:00:00 AM
Abstract :
A systematic and mathematically sound model and a refined genetic algorithm (RGA) based method for fault-section estimation in power systems is proposed. First, the probabilistic causality relationship among section fault, protective relay action and circuit breaker trip is formulated as a probabilistic causality matrix. Secondly, the well-developed parsimonious set covering theory is applied to the fault-section estimation problem, and a 0-1 integer programming model is then obtained. Thirdly, a RGA-based method for fault-section estimation is developed by using information on operations of protective relays and circuit breakers. The proposed method is versatile and can deal with uncertainties in fault-section estimation, such as protective relay failures and/or malfunction and circuit breaker failures and/or malfunction. Test results for a sample power system have shown that the probabilistic approach developed for fault-section estimation is feasible and efficient
Keywords :
circuit breakers; electrical faults; genetic algorithms; integer programming; power system protection; probability; relay protection; 0-1 integer programming model; circuit breaker trip; circuit breakers; fault-section estimation; fault-section estimation problem; parsimonious set covering theory; power systems; probabilistic causality matrix; probabilistic causality relationship; protective relay action; protective relay failures; refined genetic algorithm; section fault; uncertainties;
Journal_Title :
Generation, Transmission and Distribution, IEE Proceedings-
DOI :
10.1049/ip-gtd:19970802