Accurate location method of single‑phase‑to‑ground fault in distribution network based on zero‑mode traveling‑wave S‑transform time‑frequency matrix
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(1.State Grid Sichuan Electric Power Company, Chengdu 610041,China;2.Chengdu Power Supply Company,State Grid Sichuan Electric Power Company, Chengdu 610042)

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TM862

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    Abstract:

    To improve the accuracy of fault location in the case of single-phase grounding faults in distribution networks, a method for fault line selection and location based on the voltage zero-mode traveling-wave S-transform time-frequency matrix is proposed. First, the traveling-wave signals measured by the traveling-wave detection devices at the ends of each feeder are decoupled to obtain the fault voltage zero-mode traveling wave. Then, faults are set at special locations such as the main feeder, primary and secondary branch lines to obtain the S-transform time-frequency matrix corresponding to the fault location, and a comparison library for determining the fault branch is established. Finally, the S-transform time-frequency matrix of the fault zero-mode voltage traveling wave is compared with the data in the comparison library for similarity to determine the feeder and branch where the single-phase grounding fault occurs. The optimal location method is selected for different types of branches to achieve precise location of single-phase grounding faults in distribution networks. Simulation results show that this method has high accuracy in fault location and can achieve precise location of single-phase grounding faults in distribution networks without the need for traveling-wave detection devices across the entire distribution network.

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杨小磊,袁明哲,邹经鑫.基于零模行波S变换时频矩阵的配电网单相接地故障定位方法[J].电力科学与技术学报英文版,2024,39(4):93-101. YANG Xiaolei, YUAN Mingzhe, ZOU Jingxin. Accurate location method of single‑phase‑to‑ground fault in distribution network based on zero‑mode traveling‑wave S‑transform time‑frequency matrix[J]. Journal of Electric Power Science and Technology,2024,39(4):93-101.

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  • Online: September 10,2024
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