KIEE
The Transactions of
the Korean Institute of Electrical Engineers
KIEE
Contact
Open Access
Monthly
ISSN : 1975-8359 (Print)
ISSN : 2287-4364 (Online)
http://www.tkiee.org/kiee
Mobile QR Code
The Transactions of the Korean Institute of Electrical Engineers
ISO Journal Title
Trans. Korean. Inst. Elect. Eng.
Main Menu
Main Menu
최근호
Current Issue
저널소개
About Journal
논문집
Journal Archive
편집위원회
Editorial Board
윤리강령
Ethics Code
논문투고안내
Instructions to Authors
연락처
Contact Info
논문투고·심사
Submission & Review
Journal Search
Home
Archive
2026-08
(Vol.75 No.8)
10.5370/KIEE.2026.75.8.1971
Journal XML
XML
PDF
INFO
REF
References
1
"Standard for Arc-Fault Circuit Interrupters (AFCIs), UL 1699," UL Standards, Underwriters Laboratories, 2019.
2
"General requirements for arc fault detection devices, IEC 62606," IEC, International Electrotechnical Commission, 2013.
3
Y. Gao, J. Liu, X. Wang, "Series arc fault detection based on current waveform analysis," IEEE Trans. on Industrial Electronics, vol. 64, no. 7, pp. 5809-5818, 2017.
4
H. Liu, J. Zhao, "Limitations of overcurrent-based protection for series arc faults," IEEE Trans. on Power Delivery, vol. 33, no. 4, pp. 2035-2043, 2018.
5
A. Sedighizadeh, M. H. Amini, "Characteristics of series arc faults in low-voltage systems," Electric Power Systems Research, vol. 144, pp. 370-378, 2017.
6
J. Kim, S. Lee, K. Park, "Statistical feature-based AC series arc fault detection," IET Generation, Transmission & Distribution, vol. 13, no. 9, pp. 1665-1673, 2019.
7
A. Sedighizadeh, "Arc fault detection in low-voltage power systems using wavelet transform," IEEE Trans. on Power Delivery, vol. 31, no. 2, pp. 608-616, 2016.
8
M. S. Kim, J. S. Kim, "Frequency-domain analysis of AC arc fault current signals," IEEE Trans. on Industrial Applications, vol. 54, no. 5, pp. 4841-4850, 2018.
9
Z. Zhang, Y. Li, Q. Chen, "Effect of cable length on arc fault current characteristics," IEEE Trans. on Power Delivery, vol. 34, no. 6, pp. 2351-2359, 2019.
10
S. Saha, P. Crossley, "Propagation effects on high-frequency components in arc fault detection," Electric Power Systems Research, vol. 189, pp. 106706, 2020.
11
L. Chen, Y. Xu, H. Wang, "Machine learning–based arc fault detection in residential power systems," IEEE Access, vol. 8, pp. 189734-189744, 2020.
12
Y. Zhang, M. Kezunovic, "Interpretability issues in machine learning–based arc fault detection," IEEE Trans. on Power Delivery, vol. 36, no. 5, pp. 3021-3030, 2021.
13
A. Sedighizadeh, M. H. Amini, M. Esmaeili, "Series arc fault detection in low-voltage systems using time- and frequency-domain features," IEEE Trans. on Power Delivery, vol. 31, no. 2, pp. 608-616, 2016.
14
J. Kim, S. Lee, K. Park, "Statistical and spectral feature-based AC series arc fault detection," IET Generation, Transmission & Distribution, vol. 13, no. 9, pp. 1665-1673, 2019.
15
Y. Gao, H. Liu, X. Wang, "AC series arc fault detection based on wavelet packet and harmonic analysis," IEEE Trans. on Industrial Electronics, vol. 64, no. 7, pp. 5809-5818, 2017.
16
J. Cohen, "Statistical Power Analysis for the Behavioral Sciences," Lawrence Erlbaum Associates, Hillsdale, NJ, USA, 1988.
17
C. Spearman, "The proof and measurement of association between two things," The American Journal of Psychology, vol. 15, no. 1, pp. 72-101, 1904.
18
R. Fagin, R. Kumar, D. Sivakumar, "Comparing top k lists," SIAM Journal on Discrete Mathematics, vol. 17, no. 1, pp. 134-160, 2003.