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Optimal capacitor placement and economic analysis for reactive power compensation to improve system's efficiency at Bosowa Cement Industry, Maros

机译:在Maros的Bosowa水泥工业中优化电容器放置并进行无功补偿的经济分析,以提高系统效率

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Good electric power system must have good power quality, including small power losses and voltage value at all buses do not exceed the tolerance limit. The tolerable limit of allowable voltage value is between 0.95 to 1.05 per unit. In this research, the quality of Bosowa Cement Industry, Maros' power system will be improved by using capacitors banks. This research will focus on optimum capacitor location determination and size using Genetic Algorithm (GA) to enhance low voltage and minimize power losses. It presents a model for simultaneously allocating bank capacitors for reactive power compensation in power system with a significant amount of dynamic rotating machine load. This research conducts several simulation of power flow before and after installation, optimization of capacitor placement with different bus candidates, to determine the location, number and capacity of capacitor then its economic analysis. The selection of a voltage dropped bus as a candidate only requires 7.400 kVar of 73 capacitor bank units with the value of each capacitor bank 100 kVar which aims to improve the quality of power at Bosowa Cement Industry, Maros, which is installed on several buses. Installation of capacitors can reduce power losses in the system from 901 kW to 801 kW.
机译:好的电力系统必须具有良好的电能质量,包括小的功率损耗,并且所有母线的电压值均不得超过公差极限。容许电压值的容许极限为每单位0.95至1.05。在这项研究中,将通过使用电容器组来改善Maros电力系统Bosowa水泥行业的质量。这项研究将集中在使用遗传算法(GA)来优化低压电容器的位置和尺寸,以增强低压并最大程度地降低功率损耗。它提出了一个模型,用于同时分配具有动态旋转电机大量负载的电力系统中无功功率补偿的组电容器。本研究对安装前后的功率流进行了多次仿真,使用不同的总线候选对电容器进行了优化,以确定电容器的位置,数量和容量,然后对其进行了经济分析。选择降压总线作为候选方案仅需要7.400 kVar的73个电容器组单元,每个电容器组的值100 kVar,目的是提高安装在多条总线上的Maros Bosowa Cement Industry的电力质量。安装电容器可以将系统中的功率损耗从901 kW降低到801 kW。

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