A Study on the Reliability Evaluation of a Transmission System

  • Seungpil Moon (Power System Lab., Korea Electric Power Research Institute) ;
  • Jinboo Choo (Power System Lab., Korea Electric Power Research Institute) ;
  • Kim, Kyeongho (Power System Lab., Korea Electric Power Research Institute) ;
  • Donghoon Jeon (Power System Lab., Korea Electric Power Research Institute) ;
  • Park, Jaeseok (Dept. of Electrical Engineering, Gyeongsang National University)
  • Published : 2003.09.01

Abstract

Successful operation of power systems under the deregulated electricity market depends on the management of the transmission system reliability. Quantitative evaluation of the transmission system reliability is an important issue. Particularly, the nodal reliability indices can be of value in the management and control of congestion and reliability of the transmission system under the deregulated electricity market. In this study, a method developed for the reliability evaluation of the transmission system is presented. The Monte Carlo methods are used because of their flexibility when complex operating conditions are being considered. The usefulness and effectiveness of the proposed method are illustrated by a case study with the KEPCO system.

Keywords

References

  1. Jeaseok Choi, Daeho Do, Seungpil Moon, 'Development of a Method for ELDC Construction,' LESCOPE' 99, 1999, pp. 189-194
  2. J. S. Choi, S. P. Moon, H. S. Kim, Junmin Cha and Roy Billinton, 'Development of the ELDC and Reliability Evaluation of Composite Power System Using Monte Carlo Method,' IEEE Power Engineering Society Summer Meeting 2000, vol. 4, 2000, pp. 2063-2068
  3. R. Billinton, L. Salvaderi, J. D. McCalley, H. Chao, Th. Seitz, R. N. Allan, J. Odom and C. Fallon, 'Reliability Issues In Today's Electric Power Utility Environment,' IEEE Trans. On Power Systems, vol. 12, no. 4, pp. 1708-1714, Nov. 1997
  4. A. Chowdhury and D. O. Koval, 'COMPUTATION OF RELIABILITY BASED GENERATION EQUIVALENCE TOA TRANSMISSION FACILITY IN THE NEW ELECTRICITY MARKET,' IEEE Power Engineering Society Summer Meeting 1999, vol. 2, 1999, pp. 1024 -1030
  5. J. S. Choi, H. S. Kim, Junmin Cha and Roy Billinton, 'Nodal Probabilistic Congestion and Reliability Evaluations of a Transmission System under the Deregulated Electricity Market,' IEEE Power Engineering Society Summer Meeting 2001, vol. 1, 2001, pp. 497-502
  6. Roy Billinton and Wenyuan Li, 'Reliability Assessment of Electric Power Systems Using Monte Carlo Methods,' Plenum Press, 1994, pp. 144
  7. Roy Billinton and Ronald N. Allan, 'Reliability Assessment of Large Electric Power Systems,' Kluwer Academic Pub., 1988
  8. Roy Billinton, 'Composite System Reliability Evaluation,' IEEE Trans. on PAS, vol. PAS-88, no. 4, pp. 276-281, Feb. 1969
  9. J. S. Choi, S. P. Moon, H. S. Kim, H. Y. Kim and Roy Billinton, 'Development of an Analytical Method for Outage Cost Assessment in a Composite Power System,' 2002 International Conference on Power System Technology, vol. 3, 2000, pp. 1527-1532
  10. L. Chen, H. Suwa and J. Toyoda, 'Power Arrival Evaluation of Bulk System Including Network Constraints Based on Linear Programming Approach,' IEEE Trans. on Power Systems, vol. 6, no. 1, pp. 37-42, 1991
  11. X. Wang and J. R. McDonald, 'Modern Power System Planning,' McGraw-Hill, 1994
  12. Seungpil Moon, Hongsik Kim, Jasseok Choi, 'Nodal Probabilistic Production Cost Evaluation using Monte Carlo Simulation Methods,' KIEE Trans. vol. 51A, no. 9, pp. 425-432, 2002
  13. Jaeseok Choi, Sungrok Kang, Hongsik Kim, Seungpil Moon, Soonyoung Lee and Roy Billinton, 'A Study on Transmission System Expansion Planning using Fuzzy Branch and Bound Method,' KIEE International Trnas. on PE, vol. 2, no. 3, pp. 121-128, 2002