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An enhanced sitting-sizing scheme for shunt capacitors in radial distribution systems using improved atom search optimization

机译:使用改进的Atom搜索优化的径向分布系统中分流电容器的增强坐姿方案

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In this paper, an enhanced sitting-sizing scheme for shunt capacitors (4SCs) in a radial distribution system (RDS) based on an improved atom search optimization (IASO) algorithm is proposed. IASO emulates the model of atomic motion in nature based on interaction forces among atoms. The main goal of the 4SCs problem is to reduce the line losses and minimize the capacitor installation cost by searching for the optimal location and sizing of the capacitors. This leads to improvements in the voltage profile and reliability of the system. The IASO algorithm is introduced to achieve the optimal sitting and sizing of capacitors for RDSs. The proposed IASO algorithm is benchmarked and validated on different radial systems, including the IEEE 33-bus, IEEE 34-bus, IEEE 65-bus, IEEE 85-bus and Marsa Matrouh networks, to demonstrate its performance in real-world applications. The results obtained by the proposed IASO algorithm are compared with the standard ASO, PSO, SCA, GWO and SSA algorithms. Furthermore, the significance of the obtained results is confirmed by performing a nonparametric statistical test, i.e., the Wilcoxon's rank-sum at the 5% significance level. The comprehensive results demonstrate that the results obtained by the proposed IASO algorithm denominate the results obtained by the other algorithms and that IASO minimizes the operating costs while achieving better voltage profiles.
机译:本文提出了基于改进的原子搜索优化(IASO)算法的径向分布系统(RDS)中的用于分流电容器(4SC)的增强坐姿方案。基于原子中的相互作用,IASO在自然中仿原子动作模型。 4SCS问题的主要目标是通过搜索电容器的最佳位置和尺寸来降低线路损耗并最小化电容器安装成本。这导致改善了系统的电压曲线和可靠性。引入了IASO算法以实现RDS的最佳坐姿和尺寸的电容器。该提议的IASO算法在不同的径向系统上是基准测试和验证,包括IEEE 33总线,IEEE 34-BUS,IEEE 65总线,IEEE 85总线和MARSA Matrouh网络,以展示其在现实世界应用中的性能。将所提出的IASO算法获得的结果与标准ASO,PSO,SCA,GWO和SSA算法进行比较。此外,通过进行非参数统计测试,即威尔科克森在5%重要水平下的秩总和来证实所得结果的重要性。综合结果表明,由所提出的IASO算法获得的结果以其他算法为准,并且IASO在实现更好的电压型材时最小化运行成本。

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