Dynamic modelling of a unified power flow controller

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Dynamic modelling of a unified power flow controller

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A method to regulate the unified power flow controller (UPFC) to improve the dynamic performance of the power system is proposed in the paper. The series voltage responds to the power variatons of the transmission line, while the shunt compensation is controlled to maintain the system bus voltage and to stabilise the DC link of the UPFC. Decoupled control algorithms for active and reactive power are developed. A nonlinear dynamic model of the network is established for transient studies. The small-signal model is derived using linearisation and network reduction. An integrated formulation can be achieved which represents the dynamics of the generators, loads and the UPFC. The effectiveness of the UPFC and the accuracy of the analytical models are examined using numerical examples.

Inspec keywords: power control; power system control; control system analysis; load flow

Other keywords: linearisation; unified power flow controller; network reduction; small-signal model; power systems; decoupled control algorithms; shunt compensation; dynamic modelling; dynamic performance

Subjects: Control of electric power systems; Control system analysis and synthesis methods; Power system management, operation and economics; Power and energy control

References

    1. 1)
      • Gyugyi, L., Schauder, C.D., Williams, S.L., Rietman, T.R., Torgerson, D.R., Edris, A.: `The unified power flow controller: a new approach to power transmissioncontrol', 94 SM 474-7 PWRD, IEEE/PES summer Power meeting, July 1994, San Francisco.
    2. 2)
      • Ooi, B.T., Dai, S.Z., Galiana, F.D.: `A solid-state PWM phase-shifter', 92WM 260-0 PWRD, IEEE/PES winter meeting, January 1992, New York.
    3. 3)
      • H. Akagi , Y. Kanazawad , A. Nabae . Instantaneous reactive power compensators comprising switching devices without energy storage components. IEEE Trans. Ind. Appl. , 3 , 625 - 630
    4. 4)
      • J. Arrillaga , C.P. Arnold . (1990) Computer analysis of power systems.
    5. 5)
      • Lerch, E., Povh, D., Witzmann, R., Hlebcar, B., Mihalic, R.: `Simulation and performance analysis of unified power flow controller', 14-205, CIGRE, 1994.
    6. 6)
      • R. Mihalic , P. Zunko , D. Povh . Improvement of transient stability using unified power flowcontroller. IEEE Trans. Power Deliv. , 1 , 485 - 491
    7. 7)
      • T. Senjyu , K. Uezato . Method of stabilizing power systems using variable series impedance. Electr. Eng. Jpn. , 2 , 58 - 66
    8. 8)
      • P.M. Anderson , A.A. Fouad . (1977) Power system control and stability.
    9. 9)
      • J. Holtz . Pulsewidth modulation – a survey. IEEE Trans. Ind. Electron. , 5 , 410 - 420
    10. 10)
      • Smith, K.S., Yacamini, R.: `Time domain modelling of electrical machines and drives using modernCAE software', Proceedings of 6th IEE international conference on Electricalmachines and drives, 1993, Oxford, England, p. 323–327.
    11. 11)
      • L. Wang . A comparative study of damping schemes on damping generator oscillations. IEEE Trans. Power Syst. , 2 , 613 - 619
    12. 12)
      • Schauder, C.D., Mehta, H.: `Vector analysis and control of advanced static var compensators', Proceedings of 5th IEE international conference on AC andDC power transmission, September 1991, London, p. 266–272.
    13. 13)
      • P.C. Krause , O. Wasynczuk , S.D. Sudhoff . (1995) Analysis of electric machinery.
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