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首页> 外文期刊>Sustainability >Active Power Loss Reduction for Radial Distribution Systems by Placing Capacitors and PV Systems with Geography Location Constraints
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Active Power Loss Reduction for Radial Distribution Systems by Placing Capacitors and PV Systems with Geography Location Constraints

机译:通过将电容器和PV系统放置地理位置约束来减少径向分配系统的电力损耗

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摘要

This paper presents a highly effective method of installing both capacitors and PV systems in distribution systems for the purpose of reducing total power loss in branches. Three study cases with the installation of one capacitor, two capacitors and three capacitors were implemented and then the optimal solutions were used to install one more photovoltaic (PV) system. One PV system with 20% active power of all loads and less than active power of all loads was tested for two different conditions: (1) with geography location constraint and (2) without geography location constraint for PV system placement. The results from two systems consisting of 33 and 69 nodes were obtained by using the Stochastic Fractal Search Optimization Algorithm (SFSOA). Simulation results show that this method can determine the appropriate location and size of capacitors to reduce the total power losses more effectively than other existing methods. Furthermore, the paper also demonstrates the real impact of using both capacitors and PV systems to reduce active power loss as well as improve the voltage profile of distribution systems. This paper also finds that if it is possible to place PV systems in all nodes in distribution systems, the benefit from reducing total loss is highly significant and the investment of PV system placement is highly encouraged. As a result, it is recommended that capacitors and PV systems be used in distribution networks, and we claim that two important factors of the installed components consisting of location and size can be determined effectively by using SFSOA.
机译:本文介绍了一种高效的方法,用于在分配系统中安装电容器和光伏系统,以减少分支机构的总功率损耗。三个研究案例安装一个电容器,两个电容器和三个电容器进行了实施,然后使用最佳解决方案来安装一个更高的光伏(PV)系统。两个不同的条件测试了一个带有20%负载和所有负载的有效功率的PV系统,有两个不同的条件:(1)地理位置约束和(2),没有地理位置限制PV系统放置。通过使用随机分形搜索优化算法(SFSOA)获得由33和69节点组成的两个系统的结果。仿真结果表明,该方法可以确定电容器的适当位置和大小,以比其他现有方法更有效地降低总功率损耗。此外,本文还展示了使用电容器和PV系统降低有源功率损耗的实际影响以及改善分配系统的电压曲线。本文还发现,如果可以将PV系统放置在配送系统中的所有节点中,则高度显着降低总损失的益处,高度促使光伏系统放置的投资。结果,建议在配送网络中使用电容器和光伏系统,并且我们声称可以通过使用SFSOA有效地确定由位置和大小组成的安装组件的两个重要因素。

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