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Minimum cost upgrade of phasor measurement unit networks for synchrophasor availability

机译:相量测量单元网络的最低​​成本升级,以实现同步相量可用性

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This paper considers the problem of placing additional phasor measurement units (PMUs) and communication links into a PMU network in a power system. The objective is for the synchrophasors (PMU outputs) across the power system to meet a prescribed availability profile with fewest new PMUs and links among them. Achieving a required synchrophasor availability profile is critical in supporting wide area monitoring, protection, and control in a power system. In our recently reported work, synchrophasor availability is solved from a controlled Markov chain where binary variables indicating placement decisions are embedded as stationary control variables. In this paper, the assumption that communication links are always available wherever needed is removed. Random interruptions in PMU communications are modeled in such a way that the reformulated placement problem remains Boolean-convex, and the computational complexity with respect to the number of buses remains O.n2/. The solution to placement of PMUs and communication links into the Institute of Electrical and Electronics Engineers (IEEE) 118-bus test system is presented.
机译:本文考虑了在电源系统中将附加相量测量单元(PMU)和通信链路放置到PMU网络中的问题。目的是使整个电力系统中的同步相量(PMU输出)满足规定的可用性要求,并且新PMU和它们之间的链接最少。实现所需的同步相量可用性配置文件对于支持电力系统中的广域监视,保护和控制至关重要。在我们最近报告的工作中,同步相量的可用性是通过受控的马尔可夫链解决的,在该马尔可夫链中,指示放置决策的二进制变量被嵌入为固定控制变量。在本文中,删除了在任何需要的地方始终可以使用通信链接的假设。对PMU通信中的随机中断进行建模,以使重新安排的布局问题保持布尔凸性,并且相对于总线数量的计算复杂度保持为O.n2 /。提出了将PMU和通信链接放置到电气和电子工程师协会(IEEE)118总线测试系统中的解决方案。

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