Improved evolutionary programming with various crossover techniques for optimal power flow problem (特集 平成20年電力・エネルギー部門大会)
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概要
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This paper presents an Improved Evolutionary Programming (IEP) for solving the Optimal Power Flow (OPF) problem, which is considered as a non-linear, non-smooth, and multimodal optimization problem in power system operation. The total generator fuel cost is regarded as an objective function to be minimized. The proposed method is an Evolutionary Programming (EP)-based algorithm with making use of various crossover techniques, normally applied in Real Coded Genetic Algorithm (RCGA). The effectiveness of the proposed approach is investigated on the IEEE 30-bus system with three different types of fuel cost functions; namely the quadratic cost curve, the piecewise quadratic cost curve, and the quadratic cost curve superimposed by sine component. These three cost curves represent the generator fuel cost functions with a simplified model and more accurate models of a combined-cycle generating unit and a thermal unit with value-point loading effect respectively. The OPF solutions by the proposed method and Pure Evolutionary Programming (PEP) are observed and compared. The simulation results indicate that IEP requires less computing time than PEP with better solutions in some cases. Moreover, the influences of important IEP parameters on the OPF solution are described in details.
- 2009-01-01
著者
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YOKOYAMA Akihiko
Department of Electrical Engineering, The University of Tokyo
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Yokoyama Akihiko
Dep. Of Advanced Energy The Univ. Of Tokyo
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TANGPATIPHAN Kritsana
Department of Electrical Engineering, The University of Tokyo
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Yokoyama Akihiko
Department Of Advanced Energy School Of Frontier Sciences The University Of Tokyo
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Tangpatiphan Kritsana
Yokoyama Labs. Dep. Of Electrical Engineering The Univ. Of Tokyo
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