Network Reconfiguration for Loss Minimization by Using Johnson's Algorithm

S. Anitha, B. Ramesh
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引用次数: 7

Abstract

Power distributed to the consumers faces many disturbances in the path of the distribution network which leads to severe consequences such as unregulated voltage and real power loss. This problem can be solved effectively by using a technique called network reconfiguration. It is useful to reduce the real power loss and to keep the voltage magnitude within the limits. The proposed work is presented by using Johnson's algorithm which is used to calculate the total minimum impedance to reach the destination feeder. The main purpose of the proposed work is to obtain the shortest path, so that the real power loss can be minimized and voltage regulation can be improvement. Therefore, the proposed algorithm for reconfiguring the network is investigated on IEEE test systems 33 and 118 radial distribution system and their performance is tested with distribution load flow analysis for comparing the real and reactive power loss before and after network reconfiguration.
基于Johnson算法的损失最小化网络重构
输往用户的电力在配电网路径上面临许多干扰,导致电压失稳和实际损耗等严重后果。使用一种称为网络重构的技术可以有效地解决这个问题。这对降低实际功率损耗和保持电压幅值在限定范围内是有用的。采用约翰逊算法来计算到达目的地馈线的总最小阻抗。所提出的工作的主要目的是获得最短路径,从而使实际功率损失最小化,提高电压调节能力。为此,在IEEE测试系统33和118径向配电系统上对所提出的网络重构算法进行了研究,并通过配电网潮流分析对其性能进行了测试,比较了网络重构前后的实损和无功损耗。
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