Assessment of Probabilistic Total Transfer Capability Considering Uncertainty of Weather

불확실한 날씨 상태를 고려한 확률론적 방법의 총 송전용량 평가

  • Published : 2006.01.01

Abstract

This paper proposes a method to evaluate the Total Transfer Capability (TTC) by considering uncertainty of weather conditions. TTC is limited not only by the violation of system thermal and voltage limits, but also restricted by transient stability limit. Impact of the contingency on the power system performance could not be addressed in a deterministic way because of the random nature of the system equipment outage and the increase of outage probability according to the weather conditions. For these reasons, probabilistic approach is necessary to realize evaluation of the TTC. This method uses a sequential Monte Carlo simulation (MCS). In sequential simulation, the chronological behavior of the system is simulated by sampling sequence of the system operating states based on the probability distribution of the component state duration. Therefore, MCS is used to accomplish the probabilistic calculation of the TTC with consideration of the weather conditions.

Keywords

References

  1. North American Electric Reliability Council, (NERC), 'Available Transfer Capacity Definitions and Determination', NERC Report, June 1996
  2. Transmission Transfer Capacity Task force, 'Total transfer Capability', NERG. Princetion, NJ, May 1995
  3. X. Yu, C. Singh, 'Probabilistic Analysis of Total Transfer Capability Considering Security Constraints', 8th International Conference on PMAPS, Iowa State University, Ames, Iowa, September 12-16, 2004
  4. V. Ajjarapu, and C. Christy, 'The Continuation Powr Flow: A Tool for Steady State Voltage Stability Analysis', IEEE T-PS, Vol. 7, No.1, Feb. 1992
  5. 김규호,신동준,김진오,김태균, '가용송전용량 계산을 위한 최적화기법 응용',대한전기학회 하계학술대회 A권. pp.183-185. 2004
  6. K. Audomvongseree, A. Yokoyama, 'Consideration of an Appropriate TTC by Probabilistic Approach', IEEE Transaction on Power System, Vol. 19. No. 1, Feb 2004 https://doi.org/10.1109/TPWRS.2003.820699
  7. R. Billinton,. L. Wenyuan, 'A novel method for incorporating weather effects in composite system adequacy evaluation' Power Systems, IEEE Transactions on Vol. 6, pp. 1154-1160, Aug, 1991 https://doi.org/10.1109/59.119260
  8. R. Billinton and R. N. Allan, Reliability Evaluation of Power system, Plenum Press, New York, 1996
  9. P. A Anderson, A. A. Fouad, Power System Control and Stability. IEEE press, 1994
  10. 신동석,김진오,차승태,전동훈,추진부, '송전선로 고장실적과 날씨와의 통계적 상관관계 분석' 대한전기학회 하계 학술대회,pp.391-393,2004
  11. 한국전력연구원,'전력계통 운영시 상정고장 기준 적용을 위한 모델링 및 DB 구축', 전력산업기술기반조성사업
  12. M. H. Gamg, Li Yishan, 'Power System Reliability Indices to Measure Impacts Caused by Transient Stability Crises', Power Engineering Society Winter Meeting. IEEE, Vol. 2. 27-31, pp.766-771. 2002 https://doi.org/10.1109/PESW.2002.985110