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首页> 外文期刊>International Transactions on Electrical Energy Systems >Optimal sizing and siting of shunt capacitor banks by a new improved differential evolutionary algorithm
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Optimal sizing and siting of shunt capacitor banks by a new improved differential evolutionary algorithm

机译:改进的新型差分进化算法优化并联电容器组的尺寸和位置

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摘要

In this context, a novel structure is proposed for differential evolutionary algorithm (DEA) to compensate reactive power by optimal siting and sizing capacitor (OSSC) in radial distribution systems (RDSs). DEA is among the evolutionary algorithms (EAs) which uses crossover, mutation and selection operators to obtain optimal solution from initial population. In proposed improved DEA (iDEA), two scenarios for mutation operator is defined. Other improvement is self-adapting crossover rate. Main goal of shunt capacitor in RDS is minimizing annual cost, while in this work, in addition to annual cost, five other parameters are studied and analyzed, which are: total installed capacitor banks and its related cost, power loss and related cost as well as minimum voltage. To verify the ability of proposed technique, iDEA is tested on standard RDSs (i.e. IEEE 10-bus and 33-bus) and compared with other well-developed techniques. Also, to confirm robustness of iDEA to be utilized in practical cases, three load levels are defined and iDEA applied on practical RDS of Meshkin-shahr City in North West of Iran. Copyright © 2013 John Wiley & Sons, Ltd.
机译:在这种情况下,提出了一种用于差分进化算法(DEA)的新颖结构,以通过径向分配系统(RDSs)中的最佳选址和选型电容器(OSSC)来补偿无功功率。 DEA是进化算法(EA)中的一种,它使用交叉,变异和选择算子从初始种群中获得最优解。在提出的改进DEA(iDEA)中,定义了两种用于突变算子的方案。其他改进是自适应交叉率。 RDS中并联电容器的主要目标是使年度成本最小化,而在这项工作中,除了年度成本外,还研究和分析了其他五个参数,这些参数是:总安装的电容器组及其相关成本,功耗和相关成本作为最小电压。为了验证所提出技术的能力,iDEA在标准RDS(即IEEE 10总线和33总线)上进行了测试,并与其他完善的技术进行了比较。另外,为了确认在实际情况下使用的iDEA的鲁棒性,定义了三个负载级别,并将iDEA应用于伊朗西北部Meshkin-shahr市的实际RDS。版权所有©2013 John Wiley&Sons,Ltd.

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