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The Transactions of
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The Transactions of the Korean Institute of Electrical Engineers
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Trans. Korean. Inst. Elect. Eng.
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2025-07
(Vol.74 No.07)
10.5370/KIEE.2025.74.7.1211
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References
1
Infineon Technologies, “How to design SMPS to Pass Common Mode Lightning Surge Test,” Power Management &Supply, Application Note, V1.0, pp. 4-11, September 2006.
2
D. J. Kim, N. H. Han, K. N. Kim, “A Study on next generation surge protection system from telecommunication system,” Proceedings of the Korean Institute of Illuminating and Electrical Installation Engineers Conference, pp. 285-288, May 2009.
3
K. Gohara, N. Inami, T. Tanaka, A. Sato, N. Morii, Y. Nakatsuka, “A practical approach of lightning protection measures for power receiving facilities in telecom building,” IEEE 36th International Telecommunication Energy Conference, pp. 1-15, May 2014. DOI:10.1109/INTLEC.2014.6972186
4
Jim Lepkowski, “PCB Design Guidelines that Maximize the Performance of TVs Diodes,” On Semiconductor Application Note, August 2005.
5
Morten Soerensen, “Printed atmospheric spark gaps as ESD-protection,” 2009 20th International Zurich Symposium on Electromagnetic Compatibility, Zurich 2009, pp. 149-152, January 2014. DOI:10.1109/EMCZUR.2009.4783412
6
J. W. Park, K. H. Lee, J. H. Kim, S. S. Hong, J. S. Won and J. H. Kim, “Analysis of Surge Current Path of Flyback Converter by Lightning Surge,” The Transaction of KIPE, vol. 18, no. 2, pp. 178-183, April 2013. DOI:10.6113/TKPE.2013.18.2.178
7
IEC 610000-4-5 Electromagnetic Compatibility Part 4-5 : Testing and measurement techniques – Surge immunity test
8
Medora N. K., Kusko A., “An Enhanced Computer Simulation Model of the IEEE Std C62.41.2-2002 Surge Generator for Simulated Surge Testing of Electrical Systems,” 2007 IEEE Symposium on Product Compliance Engineering, pp. 1-8, October 2014. DOI:10.1109/PSES.2007.4378478
9
R. B. Standler, “Protection of Electronic Circuits from Overvoltages,” Dover Publications, Newyork USA, pp. 80-103, December 2003.
10
F. Heidler, J. M. Cvetic and B. V. Stanic, “Calculation of Lightning Current Parameters,” IEEE Trans. on Power Delivery, vol. 14, no. 2, pp. 399-404, April 1999.
11
S. H. Park, S. M. Yeo, H. C. Seo, C. H. Kim, Y. S. Yoo and B. S. Cho, “Analysis of Lightning Surge in Interconnected Systems,” 2007 Proceeding of the KIEE Conference, pp. 636-637, July 2007.
12
D. I. Kim, S. H. Park, S. B. Lee and C. H. Kim, “Lightning Surge Modeling Using EMTP and System Effects Analysis,” 2008 Proceeding of the KIEE Conference, pp. 2277-2278, July 2008.
13
Y. Han, L. Li, H. Chen and Y. Lu, “Influence of Modeling Methods on the Calculated Lightning Surge Overvoltages at a UHVDC Converter Station Due to Backflashover,” IEEE Trans. on Power Delivery, vol. 27, no. 3, pp. 1090-1095, July 2012. DOI:10.1109/TPWRD.2012.2190306
14
K. J. Pyo, T. K. Lee, K. H. Kim and J. W. Woo, “A Study on the Lightning Overvoltage Reduction Effect of Direct Lightning Overvoltage Reduction Effect of Direct Lightning and Lightning-induced by Applying SPD and Grounding in Wind Turbine,” The Transaction of KIEE, vol. 68, no. 12, pp. 1505-1510, December 2019. DOI:10.5370/KIEE.2019.68.12.1505
15
C. H. Ahn, “Design of Lightning Surge Protective Device to Protect Military Radar Systems,” Journal of The Institute of Electronics and Information Engineers, vol. 60, no. 10, pp. 978-985, October 2023. DOI:10.5573/ieie.2023.60.10.84
16
M. Zhou, J. Wang, Y. Liu and F. Liu, “Coupling and decoupling network for surge immunity test on power lines,” 2008 Proceeding of International Conference on Electrical Machines and Systems, pp. 151-155, Oct. 2007.
17
K. H. Lee, J. W. Park, D. K. Ryu, J. S. Won and S. S. Song, “A Solution to Protect the Power Supply Circuit Employing a New Spark-gap during Lighting Surge Inflow,” 2013 Power Electronics Conference, pp. 153-154, July 2013.
18
M. J. Lee, M. Hall, O. A. Ezekoye, R. Matthews, S. S. Chung, “A Study on Behaviour and Characteristics of Spark Discharge in Spark Ignition Systems,” Trans. of KSAE, vol. 14. no. 1. pp. 100-108, January 2006. DOI:10.7467/KSAE.2006.14.1.100
19
S. W. Choi and A. Ohsawa, “A Study on Minimum Ignition Energy by Controlled Discharge Energy,” Journal of KOSOS, vol. 22. no.1, pp. 36-39, Januray 2007. DOI:10.14326/JKOSOS.2007.22.1.036