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Methodology for Power Quality Monitors Allocation Considering Network Topology Changes

机译:考虑网络拓扑变化的电能质量监测器分配方法

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The challenge of choosing the best places for installing power quality monitors has been addressed over the years. This research field has proven to have advanced a lot, mostly in the monitoring of voltage sags and swells. The research started with transmission systems, then expanded to distribution systems, where power quality problems are more common. However, as distribution networks are constantly changing, there is more work to be done for the object of this study. This paper presents new advances in this subject by considering the uncertainties related to topology changes and distributed generation in a multi-objective optimization modeling previously reported. The Algorithm for Bicriteria Discrete Optimization (ABCDO) found an exact Pareto front and the Nondominated Sorting Genetic Algorithm II (NSGA-II) was used to obtain alternative solutions for the Pareto set found by ABCDO. The proposed methodology found one solution that contemplates all considered scenarios of uncertainties. This achievement is important for utilities to establish their power quality monitoring program without any monitor replacement as the complexity level of their distribution networks grow.
机译:多年来,选择了选择最佳安装电力质量监视器的最佳场所的挑战。这场研究领域已被证明已经提出了很多先进的,主要是在监控电压下垂和膨胀。该研究从传输系统开始,然后扩展到分配系统,其中电能质量问题更为常见。然而,由于分销网络不断变化,因此可以为本研究的对象来完成更多的工作。本文通过考虑与先前报告的多目标优化建模中的拓扑变化和分布发电相关的不确定性,提出了新的进展。 BICRiteria离散优化(ABCDO)的算法发现了精确的帕累托前部,并且使用NondoMinated分选遗传算法II(NSGA-II)来获得ABCDO发现的帕累托集的替代解决方案。提出的方法发现了一种解决方案,其考虑了所有被认为的不确定性的情景。这种成就对于公用事业公司来说,建立其电力质量监测计划,没有任何监视器的替代,因为其分销网络的复杂程度增长。

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