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Optimal allocation of capacitors in radial/mesh distribution systems using mixed integer nonlinear programming approach

机译:使用混合整数非线性规划方法的径向/网格配电系统中的电容器优化分配

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摘要

Capacitors in radial/mesh distribution systems are used to supply reactive power to minimize loss and to improve the voltage profile. The appropriate placement of capacitors is also important to ensure that system power losses and total investment capacitor costs are minimal. The capacitor placement problem consists of finding specific sitting and sizing to install capacitor banks in an electrical distribution system. Consequently, the losses are reduced due to the compensation of the reactive component of power flow. This paper presents a new mixed integer nonlinear programming approach for capacitor placement in radial/mesh distribution systems that determine the optimal sitting and sizing of capacitors with an objective of reduction power loss and investment capacitor costs. The proposed method is applied to 10, 34, and 85-bus radial distribution systems and CIVANLAR mesh distribution system. Various-scale application systems are used to compare the performance of the proposed method with the Fuzzy reasoning, particle swim optimization (PSO), plant growth simulation algorithm (PGSA), and Heuristic based. Numerical results show that the performance of the proposed MINLP method is better than the other methods. Also, the MINLP method is superior to some other methods in terms of solution power loss and costs.
机译:径向/网格分布系统中的电容器用于提供无功功率,以最大程度地减少损耗并改善电压曲线。电容器的正确放置对于确保系统功率损耗和总投资电容器成本最小化也很重要。电容器放置问题包括找到特定的坐姿和尺寸,以在配电系统中安装电容器组。因此,由于补偿了功率流的无功分量而降低了损耗。本文提出了一种新的混合整数非线性规划方法,用于在径向/网格分布系统中放置电容器,从而确定电容器的最佳放置和尺寸,目的是减少功耗和投资电容器成本。所提出的方法适用于10、34和85总线的径向分配系统和CIVANLAR网格分配系统。使用各种规模的应用系统将所提出的方法与基于模糊推理,粒子游动优化(PSO),植物生长模拟算法(PGSA)和启发式算法的性能进行比较。数值结果表明,所提出的MINLP方法的性能优于其他方法。同样,就解决方案功率损耗和成本而言,MINLP方法优于其他方法。

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