DOI QR코드

DOI QR Code

변전소 접지설계를 위한 접지전극 주변의 위험전압 측정과 분석

Measurement and Analysis of the Dangerous Voltage Around Grounding Electrode for Safety in Substation Ground

  • 투고 : 2011.09.14
  • 심사 : 2011.10.12
  • 발행 : 2011.12.01

초록

The substation grounding design,"IEEE Guide for Safety in AC Substation Grounding (ANSI / IEEE Std 80)"has been widely used. Substation grounding design and substation grounding resistance of grounding network site to predict the voltage at the risk of a very important task, which is a ground fault current due to the influx of the ground network and due to rise in the Earth's potential can be applied to human dangerous Voltage within safe tolerances be configured to be the ground because the network. IEEE Std. 80 for the substation construction safety equipment on the ground securing the ground electrode and the mesh around the boundary potential distribution in terms of risk analysis by the touch voltage and the reference was to clean up the definition and the basic steps of the voltage of the voltage limits the risk of peripheral grounding electrode Suppression by the simulator through a new secure from dangerous voltage design techniques were presented.

키워드

참고문헌

  1. 홍순석, 신복성 "위험전압 검토에 따른 개선된 접지설비모델" 조명.전기설비학회 논문지 Vol. 22 No. 4, pp. 68-77, 2008
  2. ANSI/IEEE Std. 80-1986, "IEEE Guide for Safety In AC Substation Grounding", Institute of Electrical and Electronics Engineers, Inc, New York. 1986.
  3. ANSI/IEEE Std. 80-2000, "IEEE Guide for Safety In AC Substation Grounding", Institute of Electrical and Electronics Engineers, Inc, New York. 2000.
  4. ANSI/IEEE Std. 80-1983, "IEEE Guide for Measuring Earth Resistivity, Ground Impedance, and Earth Surface Potentials of a Ground System", Institute of Electrical and Electronics Engineers, Inc., New York, 1983
  5. ANSI/IEEE Std. 142-1991, "IEEE Recommended Practice for Grounding of Industrial and Commercial Power Systems", Institute of Electrical and Electronics Engineers, Inc., New York, 1991
  6. ANSI/IEEE Std. 142-1991, "IEEE Recommended Practice for Determining the Electric Power Station Ground Potential Rise and Induced Voltage From a Power Fault", Institute of Electrical and Electronics Engineers, Inc., New York, 1996.
  7. 심용식 "위험전압 검토에 따른 개선된 접지설비 모델" 홍익대, 2008.
  8. 이복희, 최충석, 길형준 "반구형 접지모의시스템을 이용한 접지전극 형상에 따른 대진전위상승의 분석", 전기학회 논문지, Vol. 54, No.7, pp.319-325, 2005
  9. B. Thapar and K. K. Puri, "Mesh Potentials In High-Voltage Grounding Grids", IEEE Trans. on Power Apparatus and System, Vol. PAS-86, No.2, pp.249-254, 1967 https://doi.org/10.1109/TPAS.1967.291843
  10. 대한전기협회, 한국전기연구원, "수배전전력계통 접지계통과 인체 및 기기의 안전성에 관한 연구", 2006.11.
  11. Ronald P.O Riley, "Electrical Grounding:Bringing Grounding Back to Earth", DELMAR, pp40-30, 2002.
  12. Chien-Hsing Lee, A.p Sakis Meliopoulos, "A Comparison lf IEC 479-1 and IEEE Std. 80 on Grounding Safety Criteria", Proc, Natl. Sci Counc. ROC(A), Vol.23 No.5, pp612-621, 1999
  13. A. Geri, "Behaviour of Grounding Systems Excited by High Impulse Currents: the Model and Its Validation," IEEE Trans. on Power Delivery, Vol. 14, No. 3 pp1008-1017, 1999 https://doi.org/10.1109/61.772347
  14. A.P. Sakis Meliopoulos, "Power System Grounding and Transient : An Introduction", Marcel Dekker, INC. 1988
  15. 길형준, 최충석, 이복희 "개별접지전극과 연접된 접지전극의 전위상승 분포 비교 연구", 조명전기설비학회논문지, Vol. 22, No. 2, pp. 57-62, 2008
  16. "내선규정", 대한전기협회, 2000
  17. "전기설비기술기준", 산업자원부, 2001
  18. 고교건언저, 정종욱 옮김, 일본 옴사-성안당, 접지.등 전위 본딩 설계 실무지식, 2008.
  19. IEEE Std 81.2, "IEEE Guide for measurement of Impedance and Safety characteristics of Large, Extended or Interconnected Grounding Systems," pp 51-55, 1991.
  20. 고교건언저, 이형수역, 동일출판사, 接地設計入聞 1993
  21. 손석금, 김재철 "위험전압 검토에 의한 메시접지설계" 대한전기학회, Vol. 60P, No. 3, 2011
  22. 손이조, 세홍이엔씨 "전력계통해석프로그램"

피인용 문헌

  1. Grounding Grid Design Considering the Dangerous Voltage of Multi-layered Model in the Constrained Sites vol.62, pp.3, 2013, https://doi.org/10.5370/KIEEP.2013.62.3.139