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A new strategy for optimal PMU placement based on limited exhaustive approach

机译:基于有限穷举法的PMU优化放置新策略

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This paper presents a new strategy for optimal PMU placement with an objective of observing the whole monitored system with minimum PMUs. An optimization tool, named as limited exhaustive approach (LEA), is proposed. The proposed LEA retains the inherent characteristic, being of high reliability, of exhaustive approach, and in the meanwhile has a searching space much smaller than exhaustive. An approximately optimal PMU placement (AOPP) is established in order to identify the searching space of LEA. The AOPP is a kind of PMU configurations, which can completely observe the whole monitored system, but probably needs to utilize a few more PMUs than the optimal PMU placement (OPP). Moreover the AOPP is deterministically obtained by detailed power system state observability analyses. Then the concept of bus neighbor (BN) is defined, and it will help to derive the searching space of LEA from the determined AOPP. Finally the proposed strategy for optimal PMU placement is successively tested on the IEEE 14-bus system and IEEE 39-bus system, and the simulation results confirm the effectiveness and superiority of the proposed strategy.
机译:本文提出了一种用于优化PMU放置的新策略,目的是观察整个受监控系统中的最小PMU。提出了一种优化工具,称为有限穷举法(LEA)。提出的LEA保留了固有的特征,即可靠性高,穷举性强,同时搜索空间比穷举性小得多。建立一个近似最佳的PMU位置(AOPP),以识别LEA的搜索空间。 AOPP是一种PMU配置,可以完全观察整个受监控系统,但是可能需要使用比最佳PMU放置(OPP)多一些的PMU。而且,AOPP是通过详细的电力系统状态可观察性分析确定地获得的。然后定义了总线邻居(BN)的概念,这将有助于从确定的AOPP中得出LEA的搜索空间。最后,在IEEE 14总线系统和IEEE 39总线系统上对提出的PMU最优放置策略进行了连续测试,仿真结果证实了该策略的有效性和优越性。

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