Optimal PMU placement considering contingency-constraints for power system observability and measurement redundancy

S. Akhlaghi
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引用次数: 21

Abstract

This paper proposes a two-step optimization approach for optimal placement of phasor measurement unit (PMU) to obtain complete observability of power system in the case of preinstalled PMUs. The complete observability of the system in the case of normal operation and pre-installed PMUs is formulated and then, different contingency conditions in the system are considered, i.e. single line outage and single bus outage. At the first step of the proposed two-step optimization approach, a minimization model is applied to convex programing (cvx) to achieve the minimum number of PMUs which guarantees the complete observability of the system. At the second step, simulated annealing (SA) is applied to maximize the measurement redundancy. Additionally, to further reduce the number of required PMUs the zero-injection bus effect is considered. At last, the proposed approach is tested on several IEEE standard systems, i.e. IEEE 14-bus, 30-bus, 39-bus, IEEE 16-machine 68-bus and 118-bus, to demonstrate the effectiveness of the proposed approach.
考虑电力系统可观测性和测量冗余约束的PMU优化配置
本文提出了一种两步优化方法来优化相量测量单元(PMU)的位置,以获得电力系统在预安装PMU情况下的完全可观测性。建立了系统在正常运行和预装pmu情况下的完全可观察性,并考虑了系统中单线停运和单母线停运的不同应急情况。在两步优化方法的第一步,将最小化模型应用于凸规划(cvx),以实现保证系统完全可观察性的最小pmu数量。在第二步,模拟退火(SA)的应用,以最大限度地提高测量冗余。此外,为了进一步减少所需pmu的数量,还考虑了零注入总线效应。最后,在IEEE 14总线、30总线、39总线、16机68总线和118总线等多个IEEE标准系统上进行了测试,验证了所提方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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