Optimal capacitor allocation for minimizing cost of energy loss in active distribution network with different load levels

M. Myintzu, Kyaw Myo Lin, K. Oo
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引用次数: 1

Abstract

This paper proposes an effective technique to allocate a shunt capacitor using a meta-heuristic optimization-approach for minimizing the cost of energy losses. Particle swarm optimization (PSO) algorithm incorporated with MATPOWER is trained for minimizing the targeted function of the optical capacitor placement problem. The 115-node active distribution network supplied by MESC in the Mandalay distribution area is applied as a scenario. The results including active power loss and system energy loss, size and location of the optimized capacitor, voltage profiles, and the cost of energy loss are attained and analyzed. The simulations results revealed that the optimal allocation of the capacitor provides a significant reduction in the cost of energy losses as well as improvement in voltage profile with compensation of reactive power.
基于不同负荷水平有功配电网能量损耗成本最小化的电容器优化配置
本文提出了一种有效的分配并联电容器的技术,采用启发式优化方法来最小化能量损失的成本。结合MATPOWER对粒子群优化算法进行训练,以最小化光电容放置问题的目标函数。以MESC在曼德勒配电区提供的115个节点的有源配电网为场景。结果包括有功功率损耗和系统能量损耗、优化电容器的尺寸和位置、电压分布以及能量损耗成本。仿真结果表明,电容器的优化配置可以显著降低能量损失成本,并通过无功补偿改善电压分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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