首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >A data-driven method to detect and localize the single-phase grounding fault in distribution network based on synchronized phasor measurement
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A data-driven method to detect and localize the single-phase grounding fault in distribution network based on synchronized phasor measurement

机译:一种数据驱动方法,用于根据同步相位测量检测和定位分发网络的单相接地故障

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摘要

The single-phase grounding fault of power systems is influenced by a variety of factors, resulting from the developing sizes and increasing complexity of power systems. In order to take advantage of big data in power systems, we propose a revised method with the use of synchronized phasor measurement. The data-driven method is designed to detect and localize the single-phase grounding fault, which reveals the correlation between eigenvalues and status of power systems. First, it calculates the contribution of the fault to each node; it then combines with a split window to monitor power systems in real time and to detect fault more efficiently. Based on the correlation between the elements of the matrix, it is robust against bad data and highly sensitive to weak signals. In general, the proposed method is applicable to various faults and well-functioning with real-time analysis. We test the proposed method with case studies from a distribution network with 80 nodes.
机译:电力系统的单相接机接地故障受各种因素的影响,由发育尺寸和功率系统的复杂性提高。 为了利用电力系统中的大数据,我们提出了使用同步相位测量的修订方法。 数据驱动方法旨在检测和定位单相接机故障,这揭示了特征值与电力系统的状态之间的相关性。 首先,它计算故障对每个节点的贡献; 然后,它与拆分窗口相结合以实时监控电力系统并更有效地检测故障。 基于矩阵元素之间的相关性,对不良数据具有稳健,对弱信号高度敏感。 通常,所提出的方法适用于各种故障和具有实时分析的功能良好。 我们用来自80个节点的分发网络的案例研究来测试所提出的方法。

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