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A New Method of Grounding Grid Fault Diagnosis Based on Grounding Conductor Soundness

机译:基于接地导体健全性的接地网故障诊断新方法

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To improve the accuracy of fault diagnosis of substation grounding grid, an actual 35 kV substation grounding grid is tested and studied. At the beginning, when the grounding grid is under initial and normal condition, its surface potential and magnetic induction intensity are calculated and measured. These results are kept as historical standard data. Thus, the distribution rules of surface potential and magnetic induction are concluded. According to these rules and researches done before, a new diagnosis index, called grounding conductor soundness, is proposed based on grey relational degree theory. Then, typical faults are set artificially on the grounding grid to simulate fault conditions. And the surface potential and magnetic induction intensity of the grounding grid are measured again. The accuracy of the new method is illustrated by the fault diagnosis test of this grounding grid. The results have shown that the proposed diagnosis index can be used to diagnose the grounding grid's fault type and location accurately. This research may provide new idea and important supplement for the fault diagnosis and state evaluation of substation grounding grid.
机译:为了提高变电站接地网故障诊断的准确性,对实际的35 kV变电站接地网进行了测试和研究。首先,当接地网处于初始状态和正常状态时,将计算并测量其表面电势和磁感应强度。这些结果保留为历史标准数据。因此,得出了表面电势和磁感应强度的分布规律。根据这些规则和以前所做的研究,基于灰色关联度理论提出了一种新的诊断指标,称为接地导体的牢固性。然后,在接地网上人工设置典型故障,以模拟故障条件。并再次测量接地网的表面电势和磁感应强度。该接地网的故障诊断测试表明了新方法的准确性。结果表明,所提出的诊断指标可用于准确诊断接地网的故障类型和位置。该研究可为变电站接地网的故障诊断和状态评估提供新的思路和重要的补充。

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