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Source Location of Forced Oscillations Using Synchrophasor and SCADA Data

机译:使用同步相量和sCaDa数据的强迫振荡源定位

摘要

Recent advances in synchrophasor based oscillation monitoring algorithms have allowed engineers to detect oscillation issues that may have previously gone undetected. Although such an oscillation can be flagged and its oscillation shape can indicate the general vicinity of its source, low number of synchrophasors means that a specific generator or load that is the root cause of an oscillation cannot easily be pinpointed. Fortunately, SCADA serves as a much more readily available telemetered source of data if only at a relatively low sampling rate of 1 sample every 1 to 10 seconds. This paper shows that it is possible to combine synchrophasor and SCADA data for effective source location of forced oscillations. For multiple recent oscillation events, the proposed automatic methods were successful in correct identification of the oscillation source which was confirmed in each case by discussion with respective generation plant owners.
机译:基于同步相量的振荡监测算法的最新进展使工程师能够检测以前可能未发现的振荡问题。尽管可以标记出这种振荡,并且其振荡形状可以指示其源的大致范围,但同步相量的数量较少,这意味着无法轻易确定作为振荡根本原因的特定发电机或负载。幸运的是,如果仅以每1到10秒1个样本的相对较低的采样率,SCADA便是更容易获得的遥测数据源。本文表明,可以将同步相量和SCADA数据组合起来,以有效地定位强迫振荡。对于最近发生的多个振荡事件,所提出的自动方法成功地正确识别了振荡源,在每种情况下均通过与各自的发电厂所有者进行讨论来确认。

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