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首页> 外文期刊>IEEE Transactions on Instrumentation and Measurement >Optimization of Phasor Measurement Units Placement Under Contingency Using Reliability of Network Components
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Optimization of Phasor Measurement Units Placement Under Contingency Using Reliability of Network Components

机译:网络组件可靠性下的Phasor测量单元放置的Phasor测量单位的优化

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This study reports an optimization technique to reduce the requirement of phasor measurement units (PMUs) for complete observability under contingency with the use of component reliability. The present methodology secures the data measurement of unreliable and weak-load buses of power network considering hybrid observability for multiphase PMUs installation. The (N - 1), (N - 2) contingency present in the power network requires redundancy for data measurement. The network components with high reliability decrease the contingency of power networks. This reduces the requirement of data measurement redundancy for the network component having high reliability. This article utilizes this relationship between network component reliability and power network contingency to propose the concept of hybrid observability for PMU placement. It combines the concept of complete and redundant observabilities. Power network reliability is determined by incorporating the component reliability of the PMU data measurement system. Weak-load buses responsible for voltage collapse are determined by varying reactive power loading. Furthermore, the proposed weak-load bus closeness criteria (WLCC) and reliability observability criterion (ROC) are utilized for performing ranking of PMU locations using an analytical hierarchical process. These criteria identify the most significant location for initial phases of PMU installation. This strengthens the data measurement of weak-load buses through the most reliable network preventing voltage collapse due to data unavailability even during initial phases of PMU placement. The proposed methodology is illustrated on the IEEE 30- bus and NRPG 246-bus system.
机译:本研究报告了优化技术,以减少相量测量单元(PMU)以便在使用组件可靠性下实现完全可观测性的方法。考虑用于多相PMU安装的混合动力可观察性,该方法确保了电网不可靠和弱负荷总线的数据测量。电力网络中存在的(N-1),(N - 2)应急需要冗余进行数据测量。具有高可靠性的网络组件降低了电网的缺点。这降低了具有高可靠性的网络组件的数据测量冗余的要求。本文利用网络组件可靠性和电网应急之间的这种关系来提出对PMU放置的混合可观察性的概念。它结合了完整和冗余的监视的概念。通过结合PMU数据测量系统的组件可靠性来确定电源网络可靠性。负责电压崩溃负责的弱负荷总线通过不同的无功功率负载来确定。此外,所提出的弱负荷总线接近标准(WLCC)和可靠性可观察性标准(ROC)用于使用分析层次处理执行PMU位置的排序。这些标准确定了PMU安装初始阶段的最重要位置。这通过最可靠的网络防止电压崩溃,即使在PMU放置的初始相位期间,通过最可靠的网络,通过最可靠的网络防止电压折叠,这加强了弱负荷总线的数据测量。所提出的方法在IEEE 30-总线和NRPG 246总线系统上示出。

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