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Impact of synchrophasor measurement uncertainty on detecting voltage stability margin in power systems

机译:同步相量测量不确定度对电力系统电压稳定裕度检测的影响

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Phasor Measurement Units (PMUs) provide synchronized phasors (synchrophasors) of voltage and current, usually together with measurements of frequency and rate of change of frequency. One of the main characteristics of the PMUs is to provide synchronized and accurate measurement of all these quantities with a reporting rate much higher than that of traditional measurement systems. Also for this reason, PMUs have been shown have a lot of potential in different applications in power systems, including voltage stability monitoring. As the uncertainty of the PMUs impacts the monitoring performance, it is necessary to perform a thorough analysis before the monitoring system can be designed and its outcome used for control, particularly of critical applications. Hence, this paper presents the analysis of the effect of the uncertainty introduced by the PMUs, on a global method for voltage instability detection. In particular, the Load Margin Index based on wide-area phasor measurements is considered as reference method. Several tests and results obtained on the IEEE 39-bus system are presented and discussed.
机译:相量测量单元(PMU)通常提供电压和电流的同步相量(synchrophasor),以及频率和频率变化率的测量。 PMU的主要特征之一是提供所有这些量的同步且准确的测量,其报告率远高于传统测量系统。同样由于这个原因,已显示出PMU在电力系统的不同应用中具有很大的潜力,包括电压稳定性监控。由于PMU的不确定性会影响监视性能,因此必须在设计监视系统并将其结果用于控制(尤其是关键应用程序)之前进行彻底的分析。因此,本文介绍了由PMU引入的不确定性对电压不稳定检测的全局方法的影响。特别地,基于广域相量测量的负载裕度指数被认为是参考方法。介绍并讨论了在IEEE 39总线系统上获得的一些测试和结果。

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