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首页> 外文期刊>IEEE Transactions on Power Systems >Synchronized Phasor Data Based Energy Function Analysis of Dominant Power Transfer Paths in Large Power Systems
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Synchronized Phasor Data Based Energy Function Analysis of Dominant Power Transfer Paths in Large Power Systems

机译:基于同步相量数据的大型电力系统主要输电路径能量函数分析

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摘要

Many large interconnected power systems such as the U.S. eastern interconnection and the U.S. western power system are characterized by many power transfer paths or interfaces with high loading. Disruptions of these transfer paths frequently lead to increased loading on neighboring transfer paths, which themselves will become less secure and could cause further disruptions. State estimators have limited performance under large system disruptions, because of low sampling rates and potentially poor solution quality due to topology errors. Furthermore, disruptions in external power systems cannot be readily seen by control room operators because most state estimators only use reduced models for external systems. A system of well-placed phasor measurement units (PMUs) that provide voltage and current magnitude and phase at a high sampling rate can provide useful system dynamic security information. In this paper we apply energy function analysis using phasor data to monitor the dynamic status of power transfer paths. The ideas will be illustrated using actual data captured by several PMUs in the U.S. western power system
机译:许多大型互连的电力系统,例如美国东部互连和美国西部电力系统,其特征在于许多电力传输路径或具有高负载的接口。这些传输路径的中断经常导致相邻传输路径上的负载增加,这本身将变得不太安全,并可能导致进一步的中断。在低系统采样率的情况下,状态估计器的性能有限,这是因为采样率低以及由于拓扑错误而导致的解决方案质量可能很差。此外,控制室操作员无法轻易看到外部电源系统的中断,因为大多数状态估计器仅对外部系统使用简化的模型。放置良好的相量测量单元(PMU)的系统可以提供高采样率的电压,电流幅值和相位,可以提供有用的系统动态安全信息。在本文中,我们使用相量数据应用能量函数分析来监视功率传输路径的动态状态。将使用美国西部电力系统中多个PMU捕获的实际数据来说明这些想法

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