A Study on the Dynamic Reduction for Large Power System

  • Kim, Jin-Yi (School of Electrical and Computer Engineering, Seoul National University) ;
  • Won, Dong-Jun (School of Electrical and Computer Engineering, Seoul National University) ;
  • Moon, Seung-Il (School of Electrical and Computer Engineering, Seoul National University)
  • Published : 2002.03.01

Abstract

This paper presents the procedure to construct equivalent model of large power system based on nonlinear time simulation responses. It consists of coherency identification, generator aggregation and network reduction. Coherency index that can be directly implemented to this procedure is proposed. Generator aggregation based on detailed model is performed. This procedure can be used to construct equivalent model in PSS/E. It is also possible to reduce the large power system directly from the nonlinear time responses. This procedure is applied to the transient stability analysis of Korea power system that now experiences rapid changes. The equivalent model is compared with the original model in its size, accuracy, speed and performance. This paper shows that the developed equivalent model is a good estimate of the original system.

Keywords

References

  1. E.J.S. Pires de Souza and A.M. Leite da Silva, 'An efficient methodology for coherency-based dynamic equivalents,' IEE Proceedings-C, Vol.139, No.5, September 1992, pp.371-382 https://doi.org/10.1049/ip-d.1992.0049
  2. Lei Wang, Meir Klein, Solomon Yirga and Prabha Kundur, 'Dynamic Reduction of Large Power Systems for Stability Studies,' IEEE Trans. On Power System, Vol.12., No.2, May 1997, pp.889-895 https://doi.org/10.1109/59.589749
  3. William W. Price and et al. 'Large-Scale System Testing of a Power System Dynamic Equivalencing Program,' IEEE Tran. On Power Systems, Vol. 13, No.3, August 1998, pp.768-774
  4. P.M. van Oirsouw, 'A Dynamic Equivalent using Modal coherency and Frequency Response, IEEE Trans. On Power Systems, Vol. 5, No.1, February 1990, pp. 289-295
  5. J. Machowski, A. Cichy, F. Gubina and P. Omahen, 'External Subsystem Equivalent Model for SteadyState and Dynamic Security Assessment,' IEEE Trans. On Power Systems, Vol. 3, No.4, November 1988, pp. 1456-1463 https://doi.org/10.1109/59.192953
  6. Jan Machowski, Janusz W. Bialek and James R. Bumby, Power System Dynamics and Stability, Chichester:John, Wiley & Sons Ltd., 1997, pp. 389
  7. Thomas L. Baldwin, Lamine Mili and Arun G. Phadke, 'Dynamic Ward Equivalents for Transient Stability Analysis,' IEEE Trans. On Power Systems, Vol. 9, No. 1, February 1994, pp. 59-67 https://doi.org/10.1109/59.317557