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A new scalable solution to optimal PMU placement under a long-run data availability criterion

机译:一种新的可扩展解决方案,可根据长期数据可用性标准来优化PMU放置

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This paper presents a method for optimal placement of additional phase measurement units (PMUs) into a power system. The objective is to meet a specified data availability requirement at all buses with a minimum number of additional sensors. Data availability is important in high reporting rate applications, such as wide area monitoring and control for blackout mitigation. The long-run data availabilities are solved from a controlled Markov chain where binary variables indicating placement decisions are embedded as stationary control variables. The new development in this paper is on the reformulation of the optimal placement problem to significantly reduce the computational burden encountered previously in the availability-based sensor placement. This is accomplished by exploiting the structure of the underlying power system so that the new equivalent placement formulation results in a complexity that grows linearly with the number of buses in the system, rather than exponentially without reformulation. The new problem formulation is applied to the IEEE 14-bus and 118-bus test systems, and the placement results are presented.
机译:本文介绍了一种用于最佳地将附加相位测量单元(PMU)放置到电力系统中的方法。目标是在所有公共汽车上满足指定的数据可用性要求,其中包含最小额外的传感器。数据可用性在高报告速率应用中非常重要,例如广域监测和控制停电缓解。长期数据可用性从受控的马尔可夫链解决,其中指示放置决策的二进制变量被嵌入为固定控制变量。本文的新发展是对最佳放置问题的重新制定,以显着降低以前在可用性的传感器放置中遇到的计算负担。这是通过利用底层电力系统的结构来实现的,使得新的等效放置制定导致复杂性,这些复杂性与系统中的总线数量线性增长,而不是指数而不进行重新制定。新的问题配方应用于IEEE 14总线和118总线测试系统,并呈现了放置结果。

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