Fault location in hybrid transmission lines on the basis of VMD energy entropy and SVM

Min Zhao, Zhihui Kang
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Abstract

Finding the head of a traveling wave is challenging because an overhead line-cable hybrid transmission line’s wave impedance is not constant. Because of this, it is difficult to measure the hybrid transmission line precisely. This leads to the proposal of a hybrid transmission line fault location algorithm, which combines VMD energy entropy for training support vector machines and traveling wave law graphs. The VMD energy entropy is first used to train SVM to identify the faulty section. The method of traveling waves with a single end is utilized to precisely fix the fault distance within the faulty segment when the type of traveling wave has been identified. The simulation results demonstrate that the method provides precise measurements and is effective for hybrid transmission lines with a range of fault distances and grounding resistances.
基于VMD能量熵和支持向量机的混合输电线路故障定位
由于架空-电缆混合传输线的波阻抗不是恒定的,因此寻找行波的波头是一项挑战。因此,对混合输电线路进行精确测量是困难的。为此,提出了一种结合VMD能量熵训练支持向量机和行波规律图的混合传输线故障定位算法。首先利用VMD能量熵训练SVM来识别故障截面;在确定行波类型的情况下,采用单端行波法精确确定故障段内的故障距离。仿真结果表明,该方法对具有一定故障距离和接地电阻范围的混合输电线路具有较好的测量效果。
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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