Voltage Stability-Constrained Optimal Simultaneous Placement of PMUs and Channels Enhancing Measurement Reliability and Redundancy

M. Esmaili, M. Ghamsari-Yazdel
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引用次数: 21

Abstract

In this paper, a channel-oriented method is proposed for optimal placement of phasor measurement units (PMUs) with the objective function of explicit cost of PMUs and their channels. PMU measurement channels are treated as optimization binary variables, and a PMU installed at a bus assigns channels to observe its adjacent buses only if it is economically justified. Since power system substations have different reliability levels, in order to enhance reliability of the measurement system, PMUs and their channels are encouraged to be employed at more reliable buses and branches. In addition, in order to monitor fragile areas of power systems for prevention of voltage collapse, PMUs and their channels are assigned to observe buses with vulnerable voltage stability status. Furthermore, in order for a more economical and practical solution, the most probable contingencies are identified using the Monte Carlo simulation to be incorporated in the problem. Also, PMU failures and branch outages are modeled with a technique resulting in a less cost than existing methods. Channel failure is also modeled as a new type of contingency. The efficiency of the proposed method is evaluated by testing it on standard and practical large-scale test systems.
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电压稳定约束下pmu和通道的优化同时放置提高测量可靠性和冗余
本文以相量测量单元及其信道的显式成本为目标函数,提出了一种面向信道的相量测量单元优化配置方法。PMU测量通道被视为优化二进制变量,安装在总线上的PMU只有在经济上合理的情况下才会分配通道来观察相邻的总线。由于电力系统变电站具有不同的可靠性水平,为了提高测量系统的可靠性,建议在可靠性较高的母线和支路上使用pmu及其通道。此外,为了监测电力系统的脆弱区域,防止电压崩溃,分配pmu及其通道观察电压稳定脆弱状态的母线。此外,为了更经济和实用的解决方案,使用蒙特卡罗模拟来识别最可能的突发事件,并将其纳入问题中。此外,PMU故障和分支中断使用一种比现有方法成本更低的技术进行建模。通道故障也被建模为一种新的偶然性。通过在标准和实际大型测试系统上的测试,对该方法的有效性进行了评价。
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