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Evaluation of Automatic Generation Control (AGC) regulators by performance indices using data from real operation

Evaluation of Automatic Generation Control (AGC) regulators by performance indices using data from real operation

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Indices to evaluate AGC performance under both simulation and real operation are presented. These indices are based on functional dependence and statistical analysis avoiding large and long periods of data collection necessary for comparison of different regulators in real operation. A method to perform the global evaluation of the regulator using the individual values obtained for the indices is also presented. Variables typically measured in power systems are used to compute the indices. Examples of calculated values of the indices using data from real operation of two regulators in the same area of the Spanish power system are presented. Response criterion imposed in the Spanish power system is used.

References

    1. 1)
      • L.M. Smith , L.H. Fink , R.P. Schulz . Use of computer model of interconnected power system to assess generation control strategies. IEEE Trans. Power Appar. Syst. , 1835 - 1842
    2. 2)
      • G.A. Chown , R.C. Hartman . Design and experience with a fuzzy logic controller for automatic generation control (AGC). IEEE Trans. Power Syst. , 965 - 970
    3. 3)
      • G. Gross , J.W. Lee . Analysis of load frequency control performance assessment criteria. IEEE Trans. Power Syst. , 520 - 525
    4. 4)
      • F.P. DeMello , R.J. Mills , W.F. B'Rells . Automatic generation control. II. Digital control techniques. IEEE Trans. Power Appar. Syst. , 716 - 724
    5. 5)
      • (2003) North American Electric Reliability Council NERC, NERC operating manual.
    6. 6)
      • Y.L. Abdel-Magid , M.M. Dawoud . Optimal AGC tuning with genetic algorithms. Electr. Power Syst. Res. , 231 - 238
    7. 7)
      • G.C. Canavos . (1984) Applied probability and statistical methods.
    8. 8)
      • Ohno, H., Yoshida, S., Inoshima, M., Kato, M., Hiromasa, K., Fukushima, N.: `Basic study to improve performance of automatic generation control', Proc. Power Systems Computation Conf., 1996, p. 1157–1162.
    9. 9)
      • N. Jaleeli , L.S. VanSlych , D.N. Ewart , L.H. Fink , A.G. Hoffmann . Understanding automatic generation control. IEEE Trans. Power Syst. , 1106 - 1112
    10. 10)
      • Losi, A., Rossi, F., Russo, M.: `Accounting for system limitations in automatic control of electric power systems', Proc. Stockholm Power Tech Int. Symp. on Electric Power Engineering, 1995, Stockholm, Sweden, p. 193–198.
    11. 11)
      • M. Yao , R.R. Shoults , R. Kelm . AGC logic based on NERC's new control performance standard and disturbance control standard. IEEE Trans. Power Syst. , 852 - 857
    12. 12)
      • T.M. Athay . Generation scheduling and control. Proc. IEEE , 1592 - 1606
    13. 13)
      • (2004) Union for the Co-ordination of Transmission of Electricity UCTE, UCTE operation handbook.
    14. 14)
      • N. Jaleeli , L.S. VanSlyck . NERC's new control performance standards. IEEE Trans. Power Syst. , 1092 - 1099
    15. 15)
      • (1998) Ministerio de Industria y Energía: P.O.7.2, Servicio complementario de regulación secundaria.
    16. 16)
      • T. Sasaki , K. Enomoto . Statistical and dynamic analysis of generation control performance standards. IEEE Trans. Power Syst. , 476 - 481
    17. 17)
      • P.D. Henderson , H. Klaiman , J. Ginnetti , T. Snodgrass , N. Cohn , S. Bloor , L. VanSlyck . Cost aspects of AGC, inadvertent energy and time error. IEEE Trans. Power Syst. , 111 - 118
    18. 18)
      • Marannino, P., Montagna, M., Ricci, M., Demartini, G., De Simone, T.R.: `Simulation based comparison of different implementations of the AGC-ED interface', Proc. 12th Power Systems Computation Conf., 1996, p. 1170–1176.
    19. 19)
      • Honda, K., Sasakii, H., Maehara, S., Saitoh, M.: `The effect of low pass filter inserted in the LFC system', Proc. Stockholm Power Tech Int. Symp. on Electric Power Engineering, 1995, p. 199–204.
    20. 20)
      • (2002) Red Eléctrica de España REE: ‘Regulación compartida del sistema peninsular. Descripción técnica. Borrador.
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