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하이브리드 알고리즘을 응용하여 안전도제약을 만족시키는 최적전력조류
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  • 하이브리드 알고리즘을 응용하여 안전도제약을 만족시키는 최적전력조류
저자명
김규호,이상봉,이재규,유석구,Kim. Gyu-Ho,Lee. Sang-Bong,Lee. Jae-Gyu,Yu. Seok-Gu
간행물명
전기학회논문지. The transactions of the Korean Institute of Electrical Engineers. A / A, 전력기술부문
권/호정보
2000년|49권 6호|pp.305-311 (7 pages)
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대한전기학회
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정기간행물|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

This paper presents a hybrid algorithm for solving optimal power flow(OPF) in order to enhance a systems capability to cope with outages, which is based on combined application of evolutionary computation and local search method. The efficient algorithm combining main advantages of two methods is as follows : Firstly, evolutionary computation is used to perform global exploitation among a population. This gives a good initial point of conventional method. Then, local methods are used to perform local exploitation. The hybrid approach often outperforms either method operating alone and reduces the total computation time. The objective function of the security constrained OPF is the minimization of generation fuel costs and real power losses. The resulting optimal operating point has to be feasible after outages such as any single line outage(respect of voltage magnitude, reactive power generation and power flow limits). In OPF considering security, the outages are selected by contingency ranking method(contingency screening model). The OPF considering security, the outages are selected by contingency ranking method(contingency screening model). The method proposed is applied to IEEE 30 buses system to show its effectiveness.