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    봉상접지전극의 접지임피던스의 주파수의존성의 분석 = Analysis of the Frequency Dependent Characteristics of Ground Impedance of a Ground Rod

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    https://www.riss.kr/link?id=A104290571

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    This paper presents a systematic approach of measurement, modeling and analysis of grounding system impedance in the field of lightning protection system and intelligent power equipments. The measurement and analysis system of ground impedance is based on a computer aided technique. The magnitude and phase of ground impedance were determined by the novel measurement and analysis using the revised fall-of-potential method. The ground impedances of the ground rod of 50 m long are considerably dependent on the frequency. The ground impedance is mainly resistive in the frequency range of 3-20 kHz. At higher frequencies, the reactive components of the ground impedances are no longer negligible and the inductance of the ground rod was found to be the core factor deciding the ground impedance. Although the steady-state ground resistance of the ground rod of 50 m was less than that of the ground rod of 10 m, the ground impedances of the ground rod of 50 m over the frequency range of more than 60 kHz were much greater than those of the ground rod of 10 m. Furthermore, the equivalent circuit model based on the measured data was proposed, and the calculated results were in approximately agreement with the measured data.
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    This paper presents a systematic approach of measurement, modeling and analysis of grounding system impedance in the field of lightning protection system and intelligent power equipments. The measurement and analysis system of ground impedance is base...

    This paper presents a systematic approach of measurement, modeling and analysis of grounding system impedance in the field of lightning protection system and intelligent power equipments. The measurement and analysis system of ground impedance is based on a computer aided technique. The magnitude and phase of ground impedance were determined by the novel measurement and analysis using the revised fall-of-potential method. The ground impedances of the ground rod of 50 m long are considerably dependent on the frequency. The ground impedance is mainly resistive in the frequency range of 3-20 kHz. At higher frequencies, the reactive components of the ground impedances are no longer negligible and the inductance of the ground rod was found to be the core factor deciding the ground impedance. Although the steady-state ground resistance of the ground rod of 50 m was less than that of the ground rod of 10 m, the ground impedances of the ground rod of 50 m over the frequency range of more than 60 kHz were much greater than those of the ground rod of 10 m. Furthermore, the equivalent circuit model based on the measured data was proposed, and the calculated results were in approximately agreement with the measured data.

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    참고문헌 (Reference)

    1 이복희, "정보통신설비의 뇌보호" 인하대학교 출판부 197-202, 2004.

    2 이복희, "접지의 핵심기초기술" 도서출판 의제 65-69, 1999.

    3 이복희, "가변주파수 인버터를 이용한 접지임피던스의 새로운 측정기법" 53c (53c): 253-257, 2004.

    4 J. H. Bogensperger, "Resistance of Grounding Systems Stationary and Transient Behavior" Proc. 9th International Symposium on High Voltage Engineering 6715-1-4, 1995.

    5 M. I. Jambak, "Measurement of Grounding System Resistance Based on Ground High Frequency Behavior for Different Soil Type" 3 : 207-211, 2000.

    6 R. Verma, "Impulse Impedance of Buried Ground Wire IEEE Transactions on Power Apparatus and Systems" 99 (99): 2003-2007, 1980.

    7 IEEE, "IEEE Recommended Practice for Grounding of Industrial and Commercial Power System" 186-189, 1991.

    8 "IEEE Guide for Safety in AC Substation Grounding" 277-284, 1986.

    9 M. Mardiguian, "Grounding and Bonding" Interference Control Technologies Inc. 2-59261, 1988.

    10 R. Verma, "Fundamental Con- siderations and Impulse Impedance of Groundings IEEE Transactions on Power Apparatus and Systems" 100 : 1023-1030, 1981.

    1 이복희, "정보통신설비의 뇌보호" 인하대학교 출판부 197-202, 2004.

    2 이복희, "접지의 핵심기초기술" 도서출판 의제 65-69, 1999.

    3 이복희, "가변주파수 인버터를 이용한 접지임피던스의 새로운 측정기법" 53c (53c): 253-257, 2004.

    4 J. H. Bogensperger, "Resistance of Grounding Systems Stationary and Transient Behavior" Proc. 9th International Symposium on High Voltage Engineering 6715-1-4, 1995.

    5 M. I. Jambak, "Measurement of Grounding System Resistance Based on Ground High Frequency Behavior for Different Soil Type" 3 : 207-211, 2000.

    6 R. Verma, "Impulse Impedance of Buried Ground Wire IEEE Transactions on Power Apparatus and Systems" 99 (99): 2003-2007, 1980.

    7 IEEE, "IEEE Recommended Practice for Grounding of Industrial and Commercial Power System" 186-189, 1991.

    8 "IEEE Guide for Safety in AC Substation Grounding" 277-284, 1986.

    9 M. Mardiguian, "Grounding and Bonding" Interference Control Technologies Inc. 2-59261, 1988.

    10 R. Verma, "Fundamental Con- siderations and Impulse Impedance of Groundings IEEE Transactions on Power Apparatus and Systems" 100 : 1023-1030, 1981.

    11 A. D. Papalexopoulos, "Fre- quency Dependent Characteristics of Grounding System" pwrd-2 (pwrd-2): 1073-1081, 1987.

    12 A. D. Papalexopoulos, "Fre- quency Dependent Characteristics of Grounding Sys- tem IEEE Transactions on Power Delivery" 2 : 1073-11081, 1987.

    13 S. Bourg, "Deep earth electrodes in highly resistive ground" 584-589, 1995.

    14 A. Geri, "Behaviour of Grounding Systems Excited by High Impulse Currents" 14 (14): 1008-1017, 1999.

    15 I. D. Lu, "Application of a Digital Signal Analyzer to the Measurement of Power System Ground Impedance IEEE Transactions on Power Apparatus and Systems" 100 : 1918-1922, 1981.

    16 M. Nayel, "A study on a mutual grounding impedance and its transient characteristic" 2 : 1270-1275, 2002.

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