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A Fault-Tolerance Based Approach to Optimal PMU Placement

机译:基于容错的PMU优化放置方法

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摘要

Phasor measurement units (PMUs) have offered significant advancements in power system operation and control. Despite these advantages, the industry has been slow in adopting PMU technology. This slow adoption is partially due to the high cost of installing PMUs, which motivates the optimal PMU placement (OPP) problem. The work presented in this paper is motivated by the idea that the value of a high cost asset can be increased by deploying it to improve network fault-tolerance. This strategy of deploying PMUs in the proximity of higher probability contingencies increases the likelihood of more effective remedial actions, both preventive and corrective. The proposed OPP therefore considers both the cost and the extent to which the PMU placements will benefit system observability in the presence of network vulnerabilities. A bi-level framework is used for optimizing the network vulnerability and the installation cost of PMUs. In the proposed framework, the installation cost of PMUs is treated as the primary objective, and the observability, which incorporates the vulnerability analysis, is treated as the secondary objective. The proposed approach can be used as a multistage installation process or as a single-stage installation process. This approach uses evolutionary algorithms to optimize and prioritize locations and installation cost of the PMUs. The proposed approach is tested on the IEEE 14-bus, IEEE 30-bus, and IEEE reliability test system.
机译:相量测量单元(PMU)在电力系统的运行和控制方面已取得了重大进步。尽管具有这些优点,但行业在采用PMU技术方面进展缓慢。这种缓慢的采用部分是由于安装PMU的成本高,这导致了最佳PMU放置(OPP)问题。本文提出的工作是基于这样的想法,即可以通过部署高成本资产来提高网络容错性,从而增加其价值。在较高的突发事件附近部署PMU的这种策略增加了采取更有效的补救措施(包括预防和纠正措施)的可能性。因此,提出的OPP既考虑了成本,又考虑了存在网络漏洞的情况下PMU放置将有利于系统可观察性的程度和成本。双层框架用于优化网络漏洞和PMU的安装成本。在建议的框架中,将PMU的安装成本视为主要目标,将包含漏洞分析的可观察性视为次要目标。所提出的方法可以用作多阶段安装过程或单阶段安装过程。这种方法使用进化算法来优化PMU的位置和安装成本并确定其优先级。所提出的方法已在IEEE 14总线,IEEE 30总线和IEEE可靠性测试系统上进行了测试。

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