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首页> 外文期刊>IEEE transactions on industrial informatics >Molecular Evolution Based Dynamic Reconfiguration of Distribution Networks With DGs Considering Three-Phase Balance and Switching Times
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Molecular Evolution Based Dynamic Reconfiguration of Distribution Networks With DGs Considering Three-Phase Balance and Switching Times

机译:考虑三相平衡和切换时间的基于DG的基于配电网的分子进化动态重构

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摘要

As the problem of three-phase unbalance in a distribution network with distributed generations (DGs) is prominent, a multiobjective dynamic reconfiguration method for three-phase balance is proposed to make reconfiguration more reasonable and effective. Based on three-phase power flow calculation and reconfiguration process analysis of distribution networks with DGs, a new reconfiguration model with comprehensive optimization objectives of minimizing three-phase unbalance factor and number of switching times are established. A network connectivity discrimination method based on the algebraic connectivity of graph theory is adopted to quickly remove infeasible solutions, and a new multiobjective molecular differential evolution algorithm is designed to improve optimization depth and avoid prematurity in the optimization process, which is based on the principle of closer molecules with greater intermolecular repulsion. The multiobjective optimal dynamic reconfiguration of a modified IEEE 34-bus test feeder with DGs is carried out and the simulation results demonstrate the effectiveness and superiority of the proposed method.
机译:针对具有分布式发电(DG)的配电网中三相不平衡的问题突出,提出了一种三相平衡的多目标动态重构方法,以使重构更加合理和有效。基于含配电网的三相潮流计算和配网重构过程分析,建立了具有最小化三相不平衡因素和切换次数的综合优化目标的新重构模型。采用基于图论的代数连通性的网络连通性判别方法,快速去除不可行的解,并设计了一种新的多目标分子微分演化算法,以提高优化深度,避免优化过程中的过早出现,其原理是具有更强分子间排斥力的更接近的分子。进行了改进的带有DG的IEEE 34总线测试馈线的多目标最优动态重构,仿真结果证明了该方法的有效性和优越性。

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