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Multi-objective Binary Particle Swarm optimization Algorithm for Optimal Distribution System Reconfiguration

机译:多目标二进制粒子群优化算法,用于最优分布系统重新配置

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One of the salient features of protection system in smart grid is to reconFigure the network automatically with a view to insure power system reliability. This paper introduces a binary particle swarm optimizer (BPSO) based procedure for handling the network reconfiguration (NR) problem. Two objectives are taken into consideration; the first strives for reducing the system losses while the second objective function improves the voltage profile. A multi-objective framework is developed to achieve these objectives simultaneously. The proposed procedure seeks about the optimal tie switches positions and provides the minimum number of sectionalizing switches in the branches to reduce the system losses. Depending on distribution feeder operations, the distribution reconfiguration is done as binary arrangement combination of switches. The performance of distribution networks is carried out using MATLAB programming to check the effectiveness of BPSO algorithm. Numerical results are presented to explain the feasibility and the validation of the proposed procedure through the application on three standard systems called 33, 69 and 119 IEEE node systems. The obtained results using the BPSO technique are matched with various methods in the literature to manifest the efficacy of the proposed procedure.
机译:智能电网保护系统的一个突出特征是自动重新配置网络,以确保电力系统可靠性。本文介绍了基于二进制粒子群优化器(BPSO)的过程,用于处理网络重新配置(NR)问题。考虑两个目标;第一致力于在第二目标函数改善电压分布的同时降低系统损耗。开发了一种多目标框架以同时实现这些目标。所提出的程序探讨了最佳绑带开关位置,并提供了分支机构中的最小分割开关的最小数量,以降低系统损耗。根据分配馈线操作,分布重新配置是作为交换机的二进制布置组合完成的。使用MATLAB编程执行分配网络的性能,以检查BPSO算法的有效性。提出了数值结果以解释通过应用于33,69和119 IEEE节点系统的三个标准系统的应用程序的可行性和验证。使用BPSO技术的得到的结果与文献中的各种方法匹配,以表现出所提出的程序的功效。

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