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Single-Phase Grounding Fault Identification Based on Transition Conductance Tracking Method

机译:基于过渡电导跟踪方法的单相接地故障识别

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摘要

The instability of single-phase grounding faults makes it difficult to track the fault development process accurately. In this paper, a transition conductance tracking method for single-phase grounding fault identification is established to perceive the health state of the distribution network. To solve the situation that the insulation parameters of the neutral ungrounded system are difficult to obtain, a phase-shift method is proposed to measure the insulation parameters accurately. Based on the measurement results of insulation parameters, a transition conductance tracking model is constructed to monitor the changes of transition conductance in real time. Since the transition conductance varies steadily, it can be used as an important parameter to evaluate the development of a single-phase grounding fault. The innovative tracking method is verified by the simulation model, and the error analysis shows that the tracking error of transition conductance is less than 9. The simulation results demonstrate that the proposed method can track the development of grounding faults effectively and give a quick warning to the operator. The fault identification theory adopted in this paper is not limited by the neutral grounding mode and especially can be applied to situations where the neutral point parameters are not adjusted.
机译:单相接地故障的不稳定性使得难以准确跟踪故障发展过程。该文建立了一种用于单相接地故障识别的过渡电导跟踪方法,用于感知配电网的健康状态。针对中性线不接地系统绝缘参数难以获取的情况,提出一种相移法对绝缘参数进行精确测量。基于绝缘参数的测量结果,构建过渡电导跟踪模型,实时监测过渡电导的变化。由于过渡电导变化稳定,因此可以作为评估单相接地故障发展的重要参数。通过仿真模型验证了创新的跟踪方法,误差分析表明,跃迁电导的跟踪误差小于9%。仿真结果表明,所提方法能够有效地跟踪接地故障的发展,并给操作人员提供快速预警。本文采用的故障识别理论不受中性点接地方式的限制,尤其适用于中性点参数未调整的情况。

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