• DocumentCode
    929042
  • Title

    An Analytical Method for Analysis of Large-Disturbance Stability of Induction Generators

  • Author

    Grilo, Ahda Pionkoski ; Mota, A.d.A. ; Mota, L.T.M. ; Freitas, Walmir

  • Author_Institution
    State Univ. of Campinas, Campinas
  • Volume
    22
  • Issue
    4
  • fYear
    2007
  • Firstpage
    1861
  • Lastpage
    1869
  • Abstract
    This paper presents an analytical method for analysis of large-disturbance stability of squirrel-cage rotor induction generators. The proposed analytical method is based on the steady-state equivalent circuit of the induction generator and on the concepts of stable and unstable electrical-mechanical equilibrium points, which are calculated in the electrical and mechanical torque versus rotor speed space. This analytical approach sheds light on theoretical issues related to the stability of induction generators. Moreover, this method can be used as a guide to significantly reduce the simulation efforts necessary to assess the large-disturbance stability of induction generators. The method has been validated by comparing the results obtained by the analytical method with those determined by extensive dynamic simulation results through a sensitivity study. In the dynamic simulations, the induction generators are represented by a fourth-order algebraic-differential model. In addition, a simple approach is proposed for assessing the fault ride-through capability of induction generators.
  • Keywords
    asynchronous generators; differential algebraic equations; mechanical stability; squirrel cage motors; dynamic simulations; electrical-mechanical equilibrium points; fault ride-through capability; fourth-order algebraic-differential model; large-disturbance stability analysis; squirrel-cage rotor induction generators; steady-state equivalent circuit; Analytical models; Circuit faults; Circuit stability; Equivalent circuits; Induction generators; Power system stability; Rotors; Stability analysis; Steady-state; Torque; Critical fault clearance time; distributed generation; distribution system; induction generator; large-disturbance stability;
  • fLanguage
    English
  • Journal_Title
    Power Systems, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0885-8950
  • Type

    jour

  • DOI
    10.1109/TPWRS.2007.907346
  • Filename
    4349081