An effective binary integer linear programmed approach for optimal placement of PMUs in power systems

Suresh Billakanti, C. Venkaiah
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引用次数: 11

Abstract

The Phasor Measuring Units provide synchronized measurements for monitoring and control of Power System State for Power System protection. The high PMU cost and installation cost are main reasons for minimizing the number of PMUs and their optimal placement should ensure Power System full Observability. This paper presents the investigation of Optimal placement of Phasor Measuring Units (PMU) and the use of reduced number of PMUs for ensuring Power system full observability. The Optimal PMU Placement (OPP) problem has been tackled considering different cases like with and without conventional measurements and zero injection buses. The OPP is considered for different contingencies such as single PMU or line outage to ensure full system observability. The PMU Channels, which limit the number of measurements at the installed bus is also taken into account in OPP formulation. MATLAB Simulations are carried out by Binary Integer Linear programming (BILP) method and tested on standard IEEE 14-bus, IEEE 30-bus, IEEE 57-bus and IEEE 118-bus systems. The results presented were compared with the recent literature and found the effectiveness of proposed method with regard to number of PMUs and execution time is appreciable.
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电力系统pmu优化配置的有效二进制整数线性规划方法
相量测量单元为电力系统的状态监测和控制提供同步测量,实现电力系统的保护。PMU的高成本和安装成本是减少PMU数量的主要原因,PMU的优化配置应保证电力系统的可观测性。本文研究了相量测量单元的优化配置和减少相量测量单元的数量以保证电力系统的完全可观测性。考虑了不同的情况,如有和没有常规测量和零喷射总线,解决了PMU的最佳放置(OPP)问题。OPP考虑了不同的突发事件,如单个PMU或线路中断,以确保系统的可观察性。在OPP的制定中也考虑到了PMU通道,它限制了在安装总线上的测量次数。采用二进制整数线性规划(BILP)方法进行了MATLAB仿真,并在标准的IEEE 14总线、IEEE 30总线、IEEE 57总线和IEEE 118总线系统上进行了测试。将所提出的结果与最近的文献进行了比较,发现所提出的方法在pmu数量和执行时间方面的有效性是可观的。
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