Optimal placement of PMU for complete observability of the interconnected power network considering zero-injection bus: A numerical approach

R. Babu, B. Bhattacharyya
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引用次数: 14

Abstract

This paper presents an approach to place the phasor measurement unit (PMU) optimally, which minimizes the setup cost of PMU. This methodology attains complete state estimation of the interconnected power networks. An integer linear programming (ILP) method is explored for the optimal PMU placement problem. It is used to determine the optimal location and minimum number of PMUs necessary to make the interconnected power network completely observable. ILP may provide many solutions if acquainting buses to zero injection buses are unhandled. In the case of more than one solution, a bus observability redundancy index and total system observability redundancy index is proposed to find the most promising solutions set for redundancy measurement. The proposed algorithm is applied to benchmark the optimal PMU placement solutions for the IEEE 14-bus, IEEE 30-bus, New England 39-bus, IEEE 118-bus, and NRPG 246-bus test systems. The obtained results of the proposed approach are compared with the existing standard algorithm, and it is observed that the proposed approach achieves complete observability of the interconnected power network under base-load conditions.
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考虑零注入总线的互联电网完全可观测PMU优化布置:数值方法
本文提出了一种使相量测量单元(PMU)的设置成本最小化的最优放置方法。该方法实现了互联电网的完整状态估计。研究了PMU最优布局问题的整数线性规划方法。它用于确定使互联电网完全可观测所需的pmu的最佳位置和最小数量。如果没有处理熟悉总线到零注入总线的问题,ILP可以提供许多解决方案。在存在多个解决方案的情况下,提出了总线可观察性冗余指标和系统总可观察性冗余指标来寻找最有希望的冗余度量解决方案集。该算法应用于ieee14总线、ieee30总线、新英格兰39总线、ieee118总线和NRPG 246总线测试系统的最优PMU放置方案的基准测试。将所提方法的结果与现有标准算法进行了比较,发现所提方法在基本负荷条件下实现了互联电网的完全可观测性。
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