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References

1 
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2 
Wenpeng Luan, Jianli Lin, Bo Liu, and Bochao Zhao, “Arc fault detection and identification via non-intrusive current disaggregation”, ELSEVIER, vol. 210, 2022.DOI:10.1016/j.epsr.2022.108113DOI
3 
Huaijun Zhao, Jinpeng Liu, and Junchao Lou, “Series arc fault detection based on current fluctuation and zero-current features,” ELSEVIER, vol. 202, 2021.DOI:10.1016/j.epsr.2021.107626DOI
4 
Krzysztof Dowalla, et al., “A novel method for detection and location of series arc fault for non-intrusive load monitoring,” Energies, vol. 16, no. 171, 2023.DOI:10.3390/en16010171DOI
5 
Jinmi Lezama, et al., “Arc fault detection based on temporal analysis,” 2014 IEEE 60th Holm Conference on Electrical Contacts (Holm), 2014.DOI:10.1109/HOLM.2014.7031017DOI
6 
Muhammad Khanif Khafidli, et al., “Implementation AC Series Arc Fault Recognition using Mikrokontroller Based on Fast Fourier Transform,” 2018 International Electronics Symposium on Engineering Technology and Applications (IES-ETA), 2018.DOI:10.1109/ELECSYM.2018.8615529DOI
7 
Rahul Balamurugan, Fatima Al-Janahi, and Oumaima Bouhali, “Fourier Transform and Short-Time Fourier Transform Decomposition for Photovoltaic Arc Fault Detection,” 2020 47th IEEE Photovoltaic Specialists Conference (PVSC), 2020.DOI:10.1109/PVSC45281.2020.9300455DOI
8 
G. Artale, et al., “Arc fault detection method based on CZT low-frequency harmonic current analysis,” IEEE Transactions on Instrumentation and Measurement, vol. 66 no. 5, pp. 888-896, 2017.DOI:10.1109/TIM.2016.2627248DOI
9 
Yu Meng, et al., “Multi-branch AC arc fault detection based on ICEEMDAN and LightGBM algorithm,” Electric Power Systems Research 220, 2023.DOI:10.1016/j.epsr.2023.109286DOI
10 
Qiongfang Yu, Yuhai Zhang, Wenhao Lu, “Multi Branch Series arc Fault Detection Based on MEEMD and GRU Network,” 2022 4th International Symposium on Smart and Healthy Cities(ISHC), 2022.DOI:10.1109/ISHC56805.2022.00025DOI
11 
Chang-Ju Park, Jae-chang Kim, Jae-Yoon Jeong, and Sangshin Kwak, “Study of Series and Parallel AC Arc Detection Techniques on AC Power Lines Based on Time-Domain and Frequency-Domain Approaches,” Korean Institute of Electrical Engineers, vol. 70, no. 9, pp. 1295~1303, 2021.DOI:10.5370/KIEE.2021.70.9.1295DOI
12 
Korean Standard(KS).KS C IEC 62606:2014, General Conditions for Arc Fault Detection Devices, Figure 5URL
13 
Korean Standard(KS).KS C IEC 62606:2014, General Conditions for Arc Fault Detection Devices, Figure 11URL
14 
Korean Standard(KS).KS C IEC 62606:2014, General Conditions for Arc Fault Detection Devices, pp.46-47URL
15 
Korean Standard(KS).KS C IEC 62606:2014, General Conditions for Arc Fault Detection Devices, Table 1URL