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Static and dynamic aspects in bulk power system reliability evaluations | IEEE Journals & Magazine | IEEE Xplore

Static and dynamic aspects in bulk power system reliability evaluations


Abstract:

This work extends the concepts and evaluation techniques for composite generation and transmission reliability assessment, in order to provide performance measures consid...Show More

Abstract:

This work extends the concepts and evaluation techniques for composite generation and transmission reliability assessment, in order to provide performance measures considering both static (adequacy) and dynamic (security) consequences of the disturbances, which may occur in electric power systems. The assessment of dynamic aspects requires the modeling of protection systems, control actions and restoration processes. The cascading effects associated with dynamic problems are usually nonMarkovian in nature, and they are better modeled through a Monte Carlo chronological or sequential simulation. For the transient stability analysis, a method combining time simulation and transient energy function is used. The IEEE-RTS (Reliability Test System) is first extended to be analyzed bearing in mind both aspects, static and dynamic, and then used to test the proposed methodology. The usual reliability indices, e.g. LOLP, are separately calculated for measuring adequacy and security. They are also decomposed to capture the contributions of various types of failures considered; phase faults, etc.
Published in: IEEE Transactions on Power Systems ( Volume: 15, Issue: 1, February 2000)
Page(s): 189 - 195
Date of Publication: 29 February 2000

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Select All
1.
M. T. Schilling, R. Billinton, A. M. Leite da Silva and M. A. El-Kady, "Bibliography on composite system reliability", IEEE Trans. on Power Systems, vol. 4, no. 3, pp. 1122-1132, 1989.
2.
A. M. Leite da Silva, S. M. P. Ribeiro, V. L. Arienti, R. N. Allan and M. B. Do Coutto Filho, "Probabilistic load techniques applied to power system expansion planning", IEEE Trans. on Power Systems, vol. 5, no. 4, pp. 1047-1053, 1990.
3.
A. C. G. Melo, M. V. F. Pereira and A. M. Leite da Silva, "A conditional probability approach to the calculation of frequency and duration indices in composite reliability evaluation", IEEE Trans. on Power Systems, vol. 8, no. 3, pp. 1118-1125, 1993.
4.
R. Billinton and E. Khan, "A security based approach to composite power system evaluation", IEEE Trans. on Power Systems, vol. 7, no. 1, pp. 65-72, 1992.
5.
J. C. O. Mello, M. V. F. Pereira and A. M. Leite da Silva, "Evaluation of reliability worth in composite systems based on pseudo sequential Monte Carlo simulation", IEEE Trans. on Power Systems, vol. 9, no. 3, pp. 1318-1326, 1994.
6.
M. T. Schilling, A. M. Leite da Silva, R. Billinton and M. A. El-Kady, "Bibliography on power system probabilistic analysis (1962)", IEEE Trans. on Power Systems, vol. 5, no. 1, pp. 1-11, 1990.
7.
R. Billinton and P. R. S. Kuruganty, "Probabilistic assessment of transient stability in a practical multimachine system", IEEE Trans. PAS-100, no. 7, pp. 2163-2170, 1981.
8.
P. R. S. Kuruganty and R. Billinton, "Protection system modeling in a probabilistic assessment of transient stability", IEEE Trans. PAS-100, no. 5, pp. 2163-2170, 1981.
9.
P. M. Anderson and K. J. Timko, "A probabilistic model of power system disturbances", IEEE Trans. CAS-29, vol. 11, pp. 789-796, 1982.
10.
Y. Y. Hsu and C. L. Chang, "Probabilistic transient stability studies using the conditional probability approach", IEEE Trans. on Power Systems, vol. 3, no. 4, pp. 1565-1572, 1988.
11.
J. C. Dodu and A. Merlin, "New probabilistic approach taking into account reliability and operation security in EHV power system planning at EDF", IEEE Trans. PWRS-1, no. 3, pp. 175-181, 1986.
12.
A. M. Leite da Silva, J. Endrenyi and L. Wang, "Integrated treatment of adequacy and security in bulk power system reliability evaluations", IEEE Trans. on Power Systems, vol. 8, no. 1, pp. 275-285, 1993.
13.
A. M. Rei, Generation and transmission system reliability considering static and dynamic aspects, Nov. 1997.
14.
J. Endrenyi, Reliability Modeling in Electric Power Systems, Chichester, 1978.
15.
R. Billinton and R. N. Allan, Reliability Evaluation of Power Systems, NY, New York:Plenum Press, 1984.
16.
H. D. Chiang, F. F. Wu and P. P. Varaiya, "A BCU method for direct analysis of power system transient stability", IEEE Trans. on Power Systems, vol. 8, no. 3, pp. 1194-1208, 1994.
17.
J. L. Jardim, Advances in power system transient stability assessment using transient energy function methods, Oct. 1994.
18.
M. A. Pai, Energy Function Analysis for Power System Stability, Boston:Kluwer Academic Publishers, 1989.
19.
"IEEE reliability test system", IEEE Trans. PAS-98, no. 6, pp. 2047-2054, 1979.
20.
B. Porreta, D. L. Kiguel, G. A. Hamoud and E. G. Neudorf, "A comprehensive approach for adequacy and security evaluation of bulk power systems", IEEE Trans. on Power Systems, vol. 6, no. 2, pp. 433-441, 1991.

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