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April 23, 2026Energies0 citationsOpen Access

Vacuum Degree Monitoring of Distribution Class Vacuum Interrupter Using Non-Contact Coupling Capacitor Based on AC and DC Partial Discharge

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SBSeungmin BangKorea Electrotechnology Research InstituteCRChanyeol RyuHanyang UniversityBLB E. LeeHanyang University

Key Points

  • The study aims to monitor the vacuum degree in a distribution class vacuum interrupter using a non-contact method based on partial discharge.
  • Designed a partial discharge sensing electrode using 3D finite element method.
  • Calculated internal capacitance based on structural characteristics of the vacuum interrupter.
  • Analyzed partial discharge characteristics with varied voltage types.
  • Partial discharge characteristics varied based on voltage type.
  • Similar internal structure and size led to different partial discharge characteristics.
  • Proposed maintenance criteria for vacuum interrupters based on experimental findings.

Abstract

Vacuum degree inside vacuum interrupter (VI) deteriorates due to cracks from long-term operation of VI, gas emitted from internal arc heat, leakage through the joint, etc. Partial discharge occurs between the two contacts inside the VI or between the contact and floating shield, which leads to dielectric breakdown and electrical accidents of high voltage apparatus. In this paper, the study on the vacuum degree monitoring of distribution class vacuum interrupter according to non-contact method of coupling capacitor based on partial discharge was performed. In order to monitor the partial discharge between two contacts inside VI with high accuracy, a partial discharge sensing electrode (PDDE) was designed using the 3D finite element method (FEM). In addition, after calculating the internal capacitance according to the structure and size characteristics inside VI, the capacity of the coupling capacitor to detect the signal was calculated. The partial discharge characteristics according to the vacuum degree were analyzed by applying PDDE and a coupling capacitor. As results, it was found that the partial discharge characteristics inside VI differ depending on the voltage type. In addition, it was confirmed that even if VI has the same internal structure and size, the partial discharge characteristics appear differently. Based on the experimental results, we proposed maintenance criteria for VI for each voltage type.

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Cite This Study

Bang et al. (2026) studied this question.

synapsesocial.com/papers/69e9b9a285696592c86ec2f5https://doi.org/10.3390/en19082005
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