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A new PMU placement algorithm to meet a specified synchrophasor availability

机译:满足指定同步相量可用性的新PMU放置算法

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As real-time monitoring and control are entering to smarten power grids, imposing data availability criterion on PMU placement into an existing (or a new) measurement network becomes ever more important. This criterion decreases the probability of a wrong action. Synchrophasor availability (SA) at a bus measures the fraction of time in the long run when its PMU output data are correct and accessible. The SA-based placement goal is to meet a prescribed SA profile across the power system with a minimum number of PMUs. This paper reports two new developments in the SA-based PMU placement. (1) Consideration of equipment faults, in addition to data communication interruptions. (2) An efficient iterative linear program is developed to solve the problem, and the solutions always meets the full static observability. The solution is demonstrated through PMU placement in several IEEE test systems under a variety of SA specifications and random event rates.
机译:随着实时监视和控制进入智能电网的要求,将数据可用性标准强加于现有(或新)测量网络中的PMU位置变得越来越重要。此标准降低了错误操作的可能性。从长远来看,总线上的同步相量可用性(SA)衡量了PMU输出数据正确且可访问时的时间比例。基于SA的放置目标是用最少的PMU满足整个电源系统中规定的SA配置文件。本文报告了基于SA的PMU放置的两个新发展。 (1)除数据通信中断外,还要考虑设备故障。 (2)开发了一种有效的迭代线性程序来解决该问题,并且该解决方案始终满足完全静态可观性。通过在各种SA规范和随机事件发生率下将PMU放置在多个IEEE测试系统中来演示该解决方案。

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