Robust Wavelet-Based Backup Protection for Detecting High-Impedance and ARC Faults in Last-Mile LVDC Systems

  • Gham, Seungjun; 
  • Yoon, Myungseok; 
  • Zhang, Xuehan; 
  • Choi, Sungyun
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초록

Protection challenges are common issues in low-voltage direct current systems, particularly in scenarios involving high-impedance faults and arc faults. These faults may escalate into flashovers, accompanied by current distortion, thereby causing severe damage to equipment. To address these issues, this paper proposes a backup protection scheme based on the discrete wavelet transform to reliably detect and classify such faults in distribution lines. Distinguishing fault conditions from resistive load is challenging due to their similar current magnitudes, the proposed method introduces a technique for square pulse injection into the power lines. This active approach effectively differentiates these cases, thereby preventing erroneous tripping. The proposed standalone approach can be easily integrated into existing intelligent electronic devices to enhance conventional current-based protection methods. The algorithm generates binary signals representing the magnitude of current waveform distortion at both positive and negative poles. By analyzing these signals through decoders, the system state is accurately identified, triggering protective actions as necessary. This ensures robust protection and continuous power delivery despite challenging fault conditions.

키워드

Current; Protection; Loading; Modeling; Timing; Printing; Steady-state; Signal detection; Low voltage; Fault detection; Low-voltage direct current; power system protection; discrete wavelet transform; series arc fault; hardware-in-the-loop simulation; DC; LOCATION
제목
Robust Wavelet-Based Backup Protection for Detecting High-Impedance and ARC Faults in Last-Mile LVDC Systems
저자
Gham, Seungjun; Yoon, Myungseok; Zhang, Xuehan; Choi, Sungyun
DOI
10.23919/PCMP.2025.000213
발행일
2026-09
유형
Article
저널명
Protection and Control of Modern Power Systems
권
11
호
5
페이지
22 ~ 36