Concurrent placement of distributed generation resources and capacitor banks in distribution systems

M. Doostan, Shashank Navaratnan, Saeed Mohajeryami, V. Cecchi
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引用次数: 9

Abstract

In this paper, a new approach for placement of both Distributed Generation (DG) units and capacitor banks in distribution systems is proposed. The goal is to 1) reduce the total real and reactive power losses, 2) improve the voltage profile, and 3) improve the power factor for the total demand. The method uses a bus-ranking scheme based on a weighted sum of indices representative of the impacts that a DG unit or capacitor bank would have in terms of the three aforementioned objectives. Moreover, the introduced indices provide a quantitative measure to identify whether placing a DG unit or a capacitor bank is more beneficial at each bus. In order to assess the performance of the proposed method, a 49-bus distribution system is introduced. The method is applied on the test system and best locations for allocation of DG units and capacitor banks on each branch are identified. Besides, a comparison between the performance of DG units and capacitor banks at each bus is noted. At the end, by examining the resulting real and reactive power losses, voltage profile and power factor, it is demonstrated that the proposed method successfully accomplishes its objectives.
配电系统中分布式发电资源与电容器组的并行配置
本文提出了一种分布式发电机组和电容器组在配电系统中的配置方法。其目标是1)减少实际和无功功率的总损耗,2)改善电压分布,以及3)改善总需求的功率因数。该方法使用基于代表DG单元或电容器组在上述三个目标方面的影响的指标加权和的总线排序方案。此外,引入的指标提供了一种定量的措施,以确定在每条母线上放置DG单元或电容器组是否更有利。为了评估该方法的性能,介绍了一个49总线配电系统。将该方法应用于测试系统,确定了各支路DG单元和电容器组的最佳配置位置。此外,还比较了各母线上DG单元和电容器组的性能。最后,通过对实际和无功功率损耗、电压分布和功率因数的检验,证明了所提出的方法成功地实现了其目标。
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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