Sensitivity analysis of voltage sag based fault location algorithm

Po-Chen Chen, V. Malbasa, M. Kezunovic
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引用次数: 15

Abstract

In this paper, the global, variance-based, sensitivity analysis is used to quantify the impact of measurement imperfections on voltage sag based fault location. This kind of fault location requires voltage phasor information from meters to be compared to simulated cases in order to locate faults. However, meters are prone to measurement imperfections. It is therefore critical that the impact of measurement imperfections, such as measurement and loading errors, are fully assessed to account for uncertainty in algorithm inputs. Sensitivity analysis was used to attribute responsibility for uncertainty in fault location to uncertainty in the inputs of the fault location algorithm. The results demonstrate that the single most detrimental factor to precise fault location is large fault resistance, both alone and in combination with other factors. Although accurately deduced by the algorithm, other impacts of this fault feature adversely impact accuracy.
基于电压暂降故障定位算法的灵敏度分析
本文采用全局、基于方差的灵敏度分析来量化测量缺陷对基于电压暂降的故障定位的影响。这种故障定位需要将电表上的电压相量信息与模拟案例进行比较,以便进行故障定位。然而,仪表容易出现测量缺陷。因此,测量缺陷(如测量和加载误差)的影响必须得到充分评估,以考虑算法输入中的不确定性。采用灵敏度分析方法,将故障定位的不确定性归因于故障定位算法输入的不确定性。结果表明,大的故障电阻是影响精确故障定位的唯一最不利因素,无论是单独的还是与其他因素结合的。尽管该算法可以准确地推导出该故障特征,但该故障特征的其他影响会对准确性产生不利影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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