An optimal PMU placement method for power system observability

V. R. Raju, S.V.Jayarama Kumar
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引用次数: 16

Abstract

Phasor Measurement Unit (PMU) is considered to be the most significant device in future power system measurements. It provides phasor information (both magnitude and phase angle) which can be used in the real time control of power systems. In this paper, optimal PMU placement problem (OPP) is articulated as a binary integer linear programming (BILP) using Balas additive algorithm (BAA). PMU installations will be decided by binary decision variables (0, 1) for full network observability while minimizing the number of PMU installations. Existence of zero injection buses was also considered to reduce the number of PMUs used for observability. Power system connectivity matrix represented in binary form and simple heuristics are used to solve the problem. Optimal PMU placement problem has multiple solutions with equal costs. For further ranking of these multiple solutions measurement redundancy is used. The proposed algorithm has been tested on IEEE 9-bus, 14-bus, 24-bus, 30-bus systems.
电力系统可观测性的PMU优化放置方法
相量测量单元(PMU)被认为是未来电力系统测量中最重要的器件。它提供相量信息(幅值和相角),可用于电力系统的实时控制。本文利用Balas加性算法(BAA)将PMU最优放置问题(OPP)表述为二进制整数线性规划问题(BILP)。PMU安装将由二进制决策变量(0,1)决定,以实现全网络可观察性,同时最小化PMU安装的数量。零注入总线的存在也被考虑,以减少用于可观察性的pmu的数量。电力系统连接矩阵以二进制形式表示,采用简单的启发式方法求解。PMU最优放置问题有多个解决方案,且成本相等。为了进一步对这些多解进行排序,使用了测量冗余。该算法已在IEEE 9总线、14总线、24总线和30总线系统上进行了测试。
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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