Sensors (Apr 2024)

Convolutional Neural Network-Based Pattern Recognition of Partial Discharge in High-Speed Electric-Multiple-Unit Cable Termination

  • Chuanming Sun,
  • Guangning Wu,
  • Guixiang Pan,
  • Tingyu Zhang,
  • Jiali Li,
  • Shibo Jiao,
  • Yong-Chao Liu,
  • Kui Chen,
  • Kai Liu,
  • Dongli Xin,
  • Guoqiang Gao

DOI
https://doi.org/10.3390/s24082660
Journal volume & issue
Vol. 24, no. 8
p. 2660

Abstract

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Partial discharge detection is considered a crucial technique for evaluating insulation performance and identifying defect types in cable terminals of high-speed electric multiple units (EMUs). In this study, terminal samples exhibiting four typical defects were prepared from high-speed EMUs. A cable discharge testing system, utilizing high-frequency current sensing, was developed to collect discharge signals, and datasets corresponding to these defects were established. This study proposes the use of the convolutional neural network (CNN) for the classification of discharge signals associated with specific defects, comparing this method with two existing neural network (NN)-based classification models that employ the back-propagation NN and the radial basis function NN, respectively. The comparative results demonstrate that the CNN-based model excels in accurately identifying signals from various defect types in the cable terminals of high-speed EMUs, surpassing the two existing NN-based classification models.

Keywords