Braking Resistor Switching By Genetic Algorithm Optimized Fuzzy Logic Controller In Multi-Machine Power System
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概要
- 論文の詳細を見る
Fuzzy logic has been gaining increasing acceptance in control applications during the past few years. Usually, the membership functions and control rules of fuzzy logic controller are determined by trial and error which is cumbersome and time consuming. Therefore, to surmount such a drawback, this paper makes use of the Genetic Algorithm (GA) technique for optimal tuning of the parameters of the Fuzzy Logic Controller (FLC) used for the switching of the thyristor controlled braking resistor to improve power system transient stability. The braking resistor is installed at each generator bus, where rotor speed of the generator is measured to determine the firing-angle of the thyristor switch. By controlling the firing-angle of the thyristor, braking resistor controls the accelerating power in generators and thus improves the transient stability. The effectiveness of the proposed method has been demonstrated by considering both balanced (3LG: Three-phase-to-ground) and unbalanced (1LG: Single-line-to ground, 2LG: Double-line-to ground and 2LS: Line-to-line) faults at different points in a multi-machine power system.
- 社団法人 電気学会の論文
- 2003-03-01
著者
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Tamura J
Department Of Eee Kitami Institute Of Technology
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Hassan Ali
Dept. Of Eee Kitami Institute Of Technology
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Tamura Junji
Department Of Eee Kitami Institute Of Technology
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Murata Toshiaki
Kitami Inst. Of Technol. Kitami
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Murata T
Department Of Eee Kitami Institute Of Technology
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Murata Toshiaki
Department Of Eee Kitami Institute Of Technology
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Murata Toshiaki
Fukuoka University Hospital Kidney Center
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ALI Mohd.
Dept. of EEE, Rajshahi University of Engineering and Technology (RUET)
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MURATA Toshiaki
Dept. of EEE, Kitami Institute of Technology
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TAMURA Junji
Dept. of EEE, Kitami Institute of Technology
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Ali Mohd.
Dept. of EEE, Kitami Institute of Technology
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