无功补偿和优化电容器布置的功率损耗降低

M. M. Mehraban Jahromi, Pooria Dehghanian, Mohammad Reza Mousavi Khademi, M. Z. Jahromi
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引用次数: 5

摘要

提出了一种利用改进的蜜蜂交配优化算法(HBMO)对一次配电系统进行电容器优化分配的方法。在恒负载和变负载条件下,采用电容分配方法改善电压分布,降低功率损耗。电容器配置的问题表述包括确定电容器的位置、类型和尺寸。这是一个组合优化问题,其目标函数由母线电压约束下的损耗成本和电容器安装成本组成。HBMO技术可以提供全局最优解。各种规模的应用系统被用来比较所提出的方法的性能与其他参考文献,以获得一个最优或接近最优的解决方案。数值结果验证了该算法的有效性,并验证了与文献报道相比,该算法的性能有所提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reactive Power Compensation and Power Loss Reduction using Optimal Capacitor Placement
This paper presents an optimal capacitor allocation method that uses the modified Honey Bee Mating Optimization Algorithm (HBMO) for primary distribution systems. In this practice, a capacitor allocation approach is applied to improve voltage profile and reduce power loss under constant and varying load conditions. The problem formulation of capacitor allocation includes determining the location, type, and size of the capacitor. It is a combinatorial optimization problem with the objective function composed of the cost of power loss and capacitor installation subject to bus voltage constraints. The HBMO technique can provide a globally optimum solution. Various scale application systems are used to compare the proposed method's performance with the other references to achieve an optimal or near-optimal solution. Numerical results verify the proposed algorithm's effectiveness and validate an improved performance compared to the reported literature.
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