Power system optimal dispatch considering wind farms based on improved multi-objective particle swarm algorithm

Wind power has the characteristics of randomness and volatility, so conventional power system analysis, dispatch and control meet new challenges. This paper studies the topic of power system optimal dispatch including wind farms in detail, establishes a dispatch model based on multi-objective partic...

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Vydáno v:Dianli Xitong Baohu yu Kongzhi Ročník 41; číslo 17; s. 25 - 31
Hlavní autoři: Lu, Jin-Ling, Miao, Yu-Yang, Zhang, Cheng-Xiang, Ren, Hui
Médium: Journal Article
Jazyk:čínština
Vydáno: 01.09.2013
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ISSN:1674-3415
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Abstract Wind power has the characteristics of randomness and volatility, so conventional power system analysis, dispatch and control meet new challenges. This paper studies the topic of power system optimal dispatch including wind farms in detail, establishes a dispatch model based on multi-objective particle swarm algorithm. This model considers the running risk caused by cost of power generation, emissions of polluting gases, and short-term fluctuations of wind farm output power, adds reserve positive and negative rotation capacity into constraints, thus reduces the impact of power fluctuations and prediction error on the system. The searching unit ability of multi-target particle swarm algorithm is modified by mixing genetic operators in algorithm design. The capability of global optimization of the model is sharply improved. The simulation result of ten-generator system shows that the proposed method is correct and effective, and it can not only reduce the infeasible solutions in the optimization process, but als
AbstractList Wind power has the characteristics of randomness and volatility, so conventional power system analysis, dispatch and control meet new challenges. This paper studies the topic of power system optimal dispatch including wind farms in detail, establishes a dispatch model based on multi-objective particle swarm algorithm. This model considers the running risk caused by cost of power generation, emissions of polluting gases, and short-term fluctuations of wind farm output power, adds reserve positive and negative rotation capacity into constraints, thus reduces the impact of power fluctuations and prediction error on the system. The searching unit ability of multi-target particle swarm algorithm is modified by mixing genetic operators in algorithm design. The capability of global optimization of the model is sharply improved. The simulation result of ten-generator system shows that the proposed method is correct and effective, and it can not only reduce the infeasible solutions in the optimization process, but als
Author Zhang, Cheng-Xiang
Lu, Jin-Ling
Ren, Hui
Miao, Yu-Yang
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Snippet Wind power has the characteristics of randomness and volatility, so conventional power system analysis, dispatch and control meet new challenges. This paper...
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SubjectTerms Algorithms
Control systems
Fluctuation
Mathematical models
Optimization
Reserves
Searching
Wind power
Title Power system optimal dispatch considering wind farms based on improved multi-objective particle swarm algorithm
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