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High Impedance Fault Detection Method Based on Variational Mode Decomposition and Teager–Kaiser Energy Operators for Distribution Network

机译:基于变分分解和Teager-Kaiser能量算子的配电网高阻抗故障检测方法

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摘要

The focus of the paper is the difficulty of high impedance fault (HIF) detection in distribution network, and its ease to be confused with capacitor switching (CS) and load switching (LS). Based on the intermittent reignition and extinction characteristics of HIF current, this paper proposes a novel HIF detection method, which combines variational mode decomposition (VMD) and Teager-Kaiser energy operators (TKEOs). The HIF detection method is as follows: First, perform the VMD on transient zero sequence currents to obtain the intrinsic mode functions (IMFs) and select the IMFs with the largest kurtosis value as the characteristic IMFs. Second, calculate the characteristic IMFs to obtain TKEOs and divide into subintervals of TKEOs waveform to calculate the time entropy values. Finally, construct HIF detection criterion as follows: when time entropy value is 0, it is judged as CS or LS. When the entropy value is not 0, it is judged as HIF. A large number of simulations and field data tests show that the method is accurate and stable, and under the interference of 1 dB strong noise, it can accurately judge. Compared with other methods, the method has higher feature extraction accuracy, less calculation time, and better judgment accuracy.
机译:本文的重点是在配电网中检测高阻抗故障(HIF)的困难,并且易于与电容器切换(CS)和负载切换(LS)混淆。基于HIF电流的间歇性重燃和消光特性,提出了一种新颖的HIF检测方法,该方法结合了变分模式分解(VMD)和Teager-Kaiser能量算子(TKEO)。 HIF检测方法如下:首先,对瞬态零序电流执行VMD,以获得本征模式函数(IMF),然后选择峰度值最大的IMF作为特征IMF。其次,计算特征IMF以获得TKEO,并将其划分为TKEO波形的子间隔,以计算时间熵值。最后,构造如下的HIF检测准则:当时间熵值为0时,将其判断为CS或LS。当熵值不为0时,判断为HIF。大量的仿真和现场数据测试表明,该方法准确,稳定,在1dB的强噪声干扰下,可以准确判断。与其他方法相比,该方法具有更高的特征提取精度,更少的计算时间和更好的判断精度。

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