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실계통 345kV 지중송전선 대칭좌표 임피던스의 해석
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  • 실계통 345kV 지중송전선 대칭좌표 임피던스의 해석
저자명
최종기,안용호,윤용범,오세일,곽양호,이명희,Choi. Jong-Kee,Ahn. Yong-Ho,Yoon. Yong-Beum,Oh. Sei-Ill,Kwa. Yang-Ho,Lee. Myoung-Hee
간행물명
전기학회논문지= The Transactions of the Korean Institute of Electrical Engineers
권/호정보
2013년|62권 7호|pp.905-912 (8 pages)
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대한전기학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Power system fault analysis is commonly based on well-known symmetrical component method, which describes power system elements by positive, negative and zero sequence impedance. In case of balanced fault, such as three phase short circuit, transmission line can be represented by positive sequence impedance only. The majority of fault in transmission lines, however, is unbalanced fault, such as line-to-ground faults, so that both positive and zero sequence impedance is required for fault analysis. When unbalanced fault occurs, zero sequence current flows through earth and skywires in overhead transmission systems and through cable sheaths and earth in cable transmission systems. Since zero sequence current distribution between cable sheath and earth is dependent on both sheath bondings and grounding configurations, care must be taken to calculate zero sequence impedance of underground cable transmission lines. In this paper, conventional and EMTP-based sequence impedance calculation methods were described and applied to 345kV cable transmission systems (4 circuit, OF 2000mm2). Calculation results showed that detailed circuit analysis is desirable to avoid possible errors of sequence impedance calculation resulted from various configuration of cable sheath bonding and grounding in underground cable transmission systems.