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References

1 
Korea Land & Housing Corporation, 2017, Solar Power Plnat Guide Book, pp. 25-26Google Search
2 
DEHN+SÖHNE, 2016, Risk Mitigation through Lightning Protection, pp. 1-12Google Search
3 
J. G. Park, J. H. Kim, 2018, Appraisal of Solar Photovoltaic Systems: Reality and Solution, Korea Appraisal Society, Vol. 17, No. 2, pp. 5-37Google Search
4 
C. Y. Cho, 2014, Research on the lightning protection and ground design technologies of the solar power generation facilities, M.Sc. Thesis, School of Electrical and Electric Wave Engineering, Chungnam National University, pp. 74-76Google Search
5 
S. C. Cho, B. H. Lee, 2013, Numerical Calculation of Longitudinal Current Distribution in Grounding Electrode for Analyzing the Grounding Impedance, Journal of the Korean Institute of Illuminating and Electrical Installation Engineers, Vol. 27, No. 1, pp. 46-52DOI
6 
B. H. LEE, S. C. Cho, 2013, Calculation of Electric Potential Rise of Horizontal Grounding Electrode Caused by Lightning Stroke Currents, Journal of the Korean Institute of Illuminating and Electrical Installation Engineers, Vol. 27, No. 12, pp. 81-86DOI
7 
W. C. Gibson, 2008, The method of moments in electromagnetics, Chapman & Hall/CRC, pp. 33-79DOI
8 
S. Y. Kim, 2009, Engineering Electromagnetics, SciTech, Second Edition, pp. 180-200Google Search
9 
C. H. Ahn, 2018, Calculation Techniques for Transient Potential Rise of Ground Electrode to Select a Proper Impulse Withstand Voltage of Communication Facilities, The Institute of Electronics and Information Engineers, Vol. 55, No. 4, pp. 551-556Google Search
10 
R. F. Harrington, 1968, Field computation by moment methods, Macmillan, pp. 1-21Google Search
11 
P.Dragan, R. Vesna, 1997, The integral equation method for ground wire input impedance, Integral methods in science and engineering, Vol. 1, pp. 139-143Google Search
12 
L. Grcev, F. Dawalibi, 1990, An electromagnetic model for tran- sients in grounding systems, IEEE Trans. Power Delivery, Vol. 5, No. 4, pp. 1773-1781DOI
13 
L. Grcev, 2009, Modeling of grounding electrode under lightning currents, IEEE Transactions on Electromagnetic Compatibility, Vol. 51, No. 3, pp. 559-571DOI
14 
D. Roubertou, J. Fontaine, 1984, Harmonic input impedance of earth connections, Proc. of International Symposium on Electromagnetic Compatibility, pp. 717-720DOI
15 
V. Doric, D. Poljak, V. Roje, 2004, Transient analysis of the grounding electrode based on the wire antenna theory, En- gineering analysis with boundary elements 28, pp. 801-807DOI
16 
F. P. Dawalibi, W. Ruan, S. Fortin, 1995, Lightning Transient Response of Communication Towers and Associated Grounding Networks, Proc. of International Conference on Elec- tromagnetic Compatibility, Vol. , No. , pp. 95-102Google Search
17 
H. J. Kim, 2013, A Study on the Solar Power Distribution Grid and the Protection Relay, M.Sc., Thesis School of Electrical Engineering, Hanyang University, pp. 47-55Google Search
18 
J. S. Kim, 2016, Development of Technology to Prevent Lightning Accident to a 22.9 kV-Y Distribution Line and Its Reliability Assessment by Statistical Analysis, Ph.D. Thesis, School of Fire Safety Engineering, Jeonju University, pp. 21-22Google Search
19 
P.H. Bang, 2014, Analysis of Impulse Withstand Voltage Performance of Low-voltage Electrical Equipment, M.Sc. Thesis, School of Information and Electrical Engineering, Inha University, pp. 7-8Google Search
20 
Y. S. Sim, 2011, A Study on the Diagonal Unequally Spaced Mesh Grounding for the Decreasing of the Touch Voltage, Ph.D. Thesis, School of Electrical Engineering, Hongik University, pp. 18-32Google Search