Electrical Engineering  2024, Vol. 25 Issue (7): 7-14    DOI:
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Single-phase-to-ground fault section location method of distribution network based on multi-frequency band and multi-feature fusion
XIAO Wenyan, GUO Moufa, LIN Jiahao, LIN Junjie
College of Electrical Engineering and Automation, Fuzhou University, Fuzhou 350108

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Abstract  Aiming at the existing distribution network single-phase-to-ground fault section location method, which has problems such as heavy communication burden, difficulty in threshold setting, and a single amount of fault features, a distribution network single-phase-to-ground fault section location method based on multi-frequency band and multi-feature fusion is proposed. Firstly, the wavelet packet transform is used to decompose and reconstruct the derivative of the zero-sequence voltage and the zero-sequence current of the first half of the industrial frequency cycle after the fault, respectively, to obtain the different frequency band components of the original waveform. Secondly, the volt-ampere characteristic eigenvectors and zero-sequence power cumulative sum are introduced as fault characteristics according to the polarity relationship, respectively. Finally, the feature bands are screened and the section location criterion based on the fusion of feature bands and fault features is constructed. Simulation experiments and field data validation results show that the proposed method can effectively realize the threshold-free in local section location of single-phase-to-ground fault.
Key wordsresonant grounding system      single-phase-to-ground fault      fault section location      multi- frequency band and multi-feature fusion      threshold-free      wavelet packet transform     
Received: 21 February 2024     
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XIAO Wenyan
GUO Moufa
LIN Jiahao
LIN Junjie
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XIAO Wenyan,GUO Moufa,LIN Jiahao等. Single-phase-to-ground fault section location method of distribution network based on multi-frequency band and multi-feature fusion[J]. Electrical Engineering, 2024, 25(7): 7-14.
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https://dqjs.cesmedia.cn/EN/Y2024/V25/I7/7
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