Analysis of The Effect of Bank Capacitor Placement as Voltage Drop Increase in Distribution Network

Muhammad Yudha Rofandy, A. Hasibuan, R. Rosdiana
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引用次数: 1

Abstract

The quality of electricity distribution in the distribution network is an important thing that must be considered. To maintain the quality of electrical energy, there are several parameters that must be considered in the distribution network, including voltage drop, power losses, power factor and other factors. One of the solutions used to improve the voltage drop and power factor is to install a capacitor bank in the distribution network. This paper will discuss the placement of capacitor banks using the fuzzy logic method with inputs in the form of voltage profiles, power losses and power flow calculations using ETAP 12.6.0 software. In the Rao feeder, the final voltage is 16.806 kV or has passed the standard set by PLN (-10% and +5%). The Rao feeder has a power loss of 0.242 MW and a power factor of 0.7815. Fuzzy logic method is used to determine the optimal location of capacitor placement. After the installation of the capacitor bank, the terminal voltage increases and the total power loss decreases, while the power factor increases. From the results obtained, PLN as a supplier of electrical energy can reduce power losses by placing and installing capacitor banks in the distribution network.
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配电网电压降增大时排电容器放置的影响分析
配电网的配电质量是必须考虑的一个重要问题。为了保持电能的质量,配电网必须考虑几个参数,包括压降、功率损耗、功率因数等因素。改善配电网电压降和功率因数的解决方案之一是在配电网中安装电容器组。本文将使用ETAP 12.6.0软件,以电压分布、功率损耗和潮流计算为输入形式,采用模糊逻辑方法讨论电容器组的布置。在Rao馈线中,最终电压为16.806 kV或通过PLN设定的标准(-10%和+5%)。Rao馈线的功率损失为0.242 MW,功率因数为0.7815。采用模糊逻辑方法确定电容器的最佳放置位置。安装电容器组后,端子电压增大,总功率损耗减小,功率因数增大。结果表明,作为电能供应商的PLN可以通过在配电网中放置和安装电容器组来减少电能损耗。
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