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首页> 外文期刊>European transactions on electrical power engineering >Multiobjective coyote optimization algorithm for techno-economic simultaneous placement of DGs and FCLs in distribution networks
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Multiobjective coyote optimization algorithm for techno-economic simultaneous placement of DGs and FCLs in distribution networks

机译:多目标土狼在分销网络中的技术经济同时放置DGS和FCLS的优化算法

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摘要

In this paper, a multi-objective coyote optimization algorithm (MOCOA) is proposed for techno-economic benefits of simultaneous placement of fault current limiters (FCLs) and distributed generation (DGs) units in distribution grids. The proposed MOCOA is employed for mitigating the loss of power in distribution lines, minimizing the fault current levels, minimizing the economic costs of FCL size, enhancing the total voltage stability index, and reducing the total voltage deviation. The MOCOA is enhanced by emerging the concept of pareto-optimal dominance to store the distinguished solutions in each generation. Finally, TOPSIS, a technique is implemented to find the compromise solution to fulfill the operator requirements. Applications are carried out in three distribution systems. The simulation results show the great effectiveness of the proposed MOCOA in acquiring several alternatives with appropriate technical improvements in power losses, voltage stability, fault level reduction, and economical FCL size.
机译:本文提出了一种多目标土狼优化算法(MOCOA),用于在分布网格中同时放置故障电流限制器(FCLS)和分布生成(DGS)单位的技术经济效益。所提出的MOCOA用于减轻分配线路的功率损失,最大限度地减少故障电流水平,最小化FCL尺寸的经济成本,增强总电压稳定性指数,并降低总电压偏差。通过新出现的帕累托最佳的优势概念来储存各一代人的杰出解决方案,增强了MOCOA。最后,TOPSIS,实现了一种技术,以找到满足操作员要求的折衷解决方案。应用在三种分配系统中进行。仿真结果表明,拟议的MOCOA在获得若干替代品具有适当的技术改进,电压稳定性,故障水平降低和经济的FCL尺寸的巨大效果。

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