우리나라 전력계통의 물리적 및 운영 측면에서의 공급 여유력 평가

Physical and Operational Supply Margin Evaluation of KOREA Power System

  • 발행 : 2007.01.01

초록

Successful operation of power system under regulated as well as deregulated electricity markets is very important. This paper presents marginal power flow evaluation of KEPCO system in view point of physical and operation mode by using Physical and Operational Margins (POM Ver.2.2), which is developed by V&R Energy System Research. This paper introduces feature and operation mode of POM Ver.2.2 and then evaluates scenarios of 6 lines contingencies of 765kv of KEPCO system at peak load time on summer in 2006 you. The case study for actual 2006 year KEPCO system shows that this POM program is applicable sufficiently to KEPCO system. Futhermore, it demonstrates that it is helpful for operator's operating the system successfully by evaluating physical and operational margins quickly for various contingencies occurred in KEPCO system. Eventually, it will assist operators to operate more reliably the KEPCO system in future.

키워드

참고문헌

  1. Henry, S.; Pompee, J.; Devatine, L.; Bulot, M.; Bell, K.; 'New trends for the assessment of power system security under uncertainty', Power Systems Conference and Exposition, IEEE PES, 2004
  2. John A. Casazza and George C. Loehr, The Evolution of Electric Power Transmission Under Deregulation, Published by Educational Activities Board of IEEE, 2000
  3. B. S. Gisin, M. V. Obessis and J. M. Mitsche, 'Practical Methods for Transfer Limit Analysis in the Power Industry Deregulated Environment', IEEE Transactions on Power Systems, Vol. 15, No.3, August 2000, pp. 955-960
  4. 기초전력연구원, '전력계통의 확률론적 신뢰도 평가기법 도입 및 기준수립에 관한 연구' 산업자원부지원 전력연구원 과제 중간보고서, 2005년 11월
  5. S. Lockwood, R. Navarro, E. Bajrektarevic, P. Burke, S. Kang, P. Ferron, V. Kotecha, S. Kolluri, M. Nagle, S. Lee, P. Zhang, S. K. Agarwal, M. Papic, J. Useldinger, P. C. Patro, L. Arnold, D. Osborn, L. Fan, L. Hopkins, M. Y. Vaiman, and M. M. Vaiman, 'Utility Experience Computing Physical and Operational Margins', 2004 IEEE PSCE, PSCE2004-000616.PDF
  6. M. Y. Vaiman, M. M. Vaiman, and N. Abi-Samra, 'On-Line Computation of Physical and Operational Margins in Bulk Power Systems,' 2000 CIGRE Session, Paper 38-105, Paris, 2000
  7. S. Lockwood, R. Navarro, E. Bajrektarevic, P. Burke, S. Kang, P. Ferron, V. Kotecha, S. KolJuri, M. Nagle, S. Lee, P. Zhang, S. K. Agarwal, M. Papic, J. Useldinger, P. C. Patro, L. Arnold, D. Osborn, L. Fan, L. Hopkins, M. Y. Vaiman, and M. M. Vaiman, 'Utility Experience Computing Physical and Operational Margins: Part I. Basic Concept and Evaluation:' Submitted to PSCE Conference, 2004
  8. M. Papic, M. Y. Vaiman, and M. M. Vaiman, 'A Novel Non-Linear Security Based Approach to Assess Transfer Capability at Idaho Power Company', PowerTech Proceedings
  9. M. Papic, M. Y. Vairnan, M. M. Vaiman, 'Determining a Secure Region of Operation for Idaho Power Company', IEEE Proceedings, 0-7803-9156- X/05, 2005
  10. Roy Billinton and Wenyuan Li, Reliability Assessment of Electric Power Systems Using Monte Carlo Methods : Plenum Press, 1994
  11. Roy Billinton and Ronald N. Allan, Reliability Evaluation of Power Systems: Plenum Press, 1984
  12. A.J. Wood and B.F. Wollenberg, Power Generation Operation and Control: John Wiley & Sons, 1984
  13. G. C. Ejebe, J. G. Waight, M. Santos-Nieto and W. F. Tinney, 'Fast Calculation of Linear Available Transfer Capability', IEEE Transactions on Power Systems, Vol. 15, No.3, August 2000, pp. 1112-1116 https://doi.org/10.1109/59.871741
  14. V&R Energy Systems Research Inc., 'POM manual v2.2', V &R POM v2.2 manual, 2004
  15. 전력신뢰도 및 품질연구센터, '복합전력계통의 신뢰도평가' 전력신뢰도 및 품질연구센터(http://eprrc.snu.ac.kr/), 제5차 정기 워크샵, 용평 2006년 7월
  16. 한국전력소, '한국전력거래소 전력통계정보시스템 http://epsis.kpx.or.kr/' 2006년 8월