Adaptive Evolutionary Programming Incorporating Neural Network for Transient Stability Constrained Optimal Power Flow
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概要
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This paper presents an adaptive evolutionary programming incorporating neural network for solving transient stability constrained optimal power flow (TSCOPF). The proposed AEP method is an evolutionary programming (EP)-based algorithm, which adjusts its population size automatically during an optimization process. The artificial neural network, which classifies the AEP individual based on its stability degrees, is embedded into the search template to reduce the computational load caused by transient stability constraints. The fuel cost minimization is selected as the objective function of TSCOPF. The proposed method is tested on the IEEE 30-bus system with two types of the fuel cost functions, i.e. the conventional quadratic function and the quadratic function superimposed by sine component to model the cost curves without and with valve-point loading effect respectively. The numerical examples show that AEP is more effective than conventional EP in terms of computational speed, and when the neural network is incorporated into AEP, it can significantly reduce the computational time of TSCOPF. A study of the architecture of the neural network is also conducted and discussed. In addition, the effectiveness of the proposed method for solving TSCOPF with the consideration of multiple contingencies is manifested.
- 2010-12-01
著者
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Yokoyama Akihiko
Department Of Advanced Energy 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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Tangpatiphan Kritsana
Yokoyama Labs. Department Of Electrical Engineering The University Of Tokyo
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