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    낙뢰 시 태양광발전소의 개별접지 및 통합접지에 따른 낙뢰 유도 과전압 비교 분석 = An Analysis and Comparison of Lightning Induced Overvoltage according to Isolation and Common Grounding System of Photovoltaic Power Plant in Lightning Strikes

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    https://www.riss.kr/link?id=A106097537

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    Photovoltaic Power Plant(PV Plant) facilities have been steadily growing not only in Korea but also in the world. As the demand for PV Plant installation is continuously increasing, damages to the PV Plant are also increasing due to the lightning induced overvoltage caused by the lightning stroke. In this paper, the maximum lightning induced overvoltages at the critical facility for the 100kW PV Plant, (such as connection panel, inverter and distribution panel) in lightning strikes are compared by grounding systems(Isolation Grounding/Common Grounding) with simulation utilizing CDEGS. Simulation results show that the maximum lightning induced overvoltage generated in the critical facility for 100kW PV Plant is approximately 68kV lower in common grounding than in isolation grounding when a lightning current is applied to a point closest to a critical facility. In case of lightning, this paper concludes that common grounding is safer than isolated grounding in order to protect the critical facility for 100kW PV Plant from lightning induced overvoltage.
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    Photovoltaic Power Plant(PV Plant) facilities have been steadily growing not only in Korea but also in the world. As the demand for PV Plant installation is continuously increasing, damages to the PV Plant are also increasing due to the lightning indu...

    Photovoltaic Power Plant(PV Plant) facilities have been steadily growing not only in Korea but also in the world. As the demand for PV Plant installation is continuously increasing, damages to the PV Plant are also increasing due to the lightning induced overvoltage caused by the lightning stroke. In this paper, the maximum lightning induced overvoltages at the critical facility for the 100kW PV Plant, (such as connection panel, inverter and distribution panel) in lightning strikes are compared by grounding systems(Isolation Grounding/Common Grounding) with simulation utilizing CDEGS. Simulation results show that the maximum lightning induced overvoltage generated in the critical facility for 100kW PV Plant is approximately 68kV lower in common grounding than in isolation grounding when a lightning current is applied to a point closest to a critical facility. In case of lightning, this paper concludes that common grounding is safer than isolated grounding in order to protect the critical facility for 100kW PV Plant from lightning induced overvoltage.

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    참고문헌 (Reference)

    1 박진규, "태양광발전소의 감정평가: 실태와 대안" 한국감정평가학회 17 (17): 5-37, 2018

    2 안창환, "정보통신기기의 적합한 임펄스 내전압 선정을 위한 접지전극의 과도전위상승 산정 기법" 대한전자공학회 55 (55): 145-150, 2018

    3 안창환, "접지전류의 입사점에 따른 정보통신설비용 수평접지전극의 과도전위상승 계산 방법" 대한전자공학회 51 (51): 197-203, 2014

    4 조성철, "접지임피던스 분석을 위한 접지전극의 전류분포 수치계산" 한국조명.전기설비학회 27 (27): 46-52, 2013

    5 V. Doric, "Transient analysis of the grounding electrode based on the wire antenna theory" 28 : 801-807, 2004

    6 W. C. Gibson, "The method of moments in electromagnetics" Chapman & Hall/CRC 33-79, 2008

    7 Korea Land & Housing Corporation, "Solar Power Plnat Guide Book"

    8 DEHN+SÖHNE, "Risk Mitigation through Lightning Protection"

    9 C. Y. Cho, "Research on the lightning protection and ground design technologies of the solar power generation facilities" Chungnam National University 2014

    10 L. Grcev, "Modeling of grounding electrode under lightning currents" 51 (51): 559-571, 2009

    1 박진규, "태양광발전소의 감정평가: 실태와 대안" 한국감정평가학회 17 (17): 5-37, 2018

    2 안창환, "정보통신기기의 적합한 임펄스 내전압 선정을 위한 접지전극의 과도전위상승 산정 기법" 대한전자공학회 55 (55): 145-150, 2018

    3 안창환, "접지전류의 입사점에 따른 정보통신설비용 수평접지전극의 과도전위상승 계산 방법" 대한전자공학회 51 (51): 197-203, 2014

    4 조성철, "접지임피던스 분석을 위한 접지전극의 전류분포 수치계산" 한국조명.전기설비학회 27 (27): 46-52, 2013

    5 V. Doric, "Transient analysis of the grounding electrode based on the wire antenna theory" 28 : 801-807, 2004

    6 W. C. Gibson, "The method of moments in electromagnetics" Chapman & Hall/CRC 33-79, 2008

    7 Korea Land & Housing Corporation, "Solar Power Plnat Guide Book"

    8 DEHN+SÖHNE, "Risk Mitigation through Lightning Protection"

    9 C. Y. Cho, "Research on the lightning protection and ground design technologies of the solar power generation facilities" Chungnam National University 2014

    10 L. Grcev, "Modeling of grounding electrode under lightning currents" 51 (51): 559-571, 2009

    11 F. P. Dawalibi, "Lightning Transient Response of Communication Towers and Associated Grounding Networks" 95-102, 1995

    12 D. Roubertou, "Harmonic input impedance of earth connections" 717-720, 1984

    13 R. F. Harrington, "Field computation by moment methods" Macmillan 1-21, 1968

    14 P. H. Bang, "Analysis of Impulse Withstand Voltage Performance of Low-voltage Electrical Equipment" Inha University 2014

    15 L. Grcev, "An electromagnetic model for transients in grounding systems" 5 (5): 1773-1781, 1990

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    2011-01-01 등재 등재학술지 유지 (등재유지) KCI등재
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    2004-01-01 등재 등재학술지 선정 (등재후보2차) KCI등재
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