• DocumentCode
    289304
  • Title

    An efficient method of simulating the detailed electromechanical response of industrial power systems

  • Author

    Mayer, Jeffrey S.

  • Author_Institution
    Dept. of Electr. Eng., Pennsylvania State Univ., University Park, PA, USA
  • fYear
    1994
  • fDate
    2-6 Oct 1994
  • Firstpage
    2103
  • Abstract
    A new method is presented for simulating the large-disturbance, electromechanical response of mine and other industrial power systems. With this method, detailed waveforms that include the transient components of machine currents and bus voltages can be obtained rapidly. This approach may be a useful supplement to traditional steady-state analysis techniques when considering circuit breaker requirements in light of a variety of system transients including: starting of large motors or groups of motors, reclosure of motors following temporary isolation or during bus transfers, and rapid changes in the mechanical loading of motors. The short simulation times associated with this method are achieved by modeling the power system with line charging capacitance neglected. This eliminates high frequency modes, which often lead to long computation times in other detailed simulations, but retains the machine stator transients that affect significantly the instantaneous currents and voltages throughout the system. With shunt capacitance neglected, however, the system model is represented by a set of differential-algebraic equations (DAEs). The crux of the new method is a systematic procedure for establishing a readily simulated state-space model from these DAEs
  • Keywords
    algebra; circuit breakers; differential equations; digital simulation; electric motors; industrial power systems; machine theory; mineral processing industry; mining; power system analysis computing; power system transients; starting; state-space methods; stators; transient analysis; bus transfers; circuit breaker requirements; differential-algebraic equations; electromechanical response; industrial power systems; instantaneous currents; instantaneous voltages; mechanical loading changes; mine power systems; motors reclosure; simulation; starting; state-space model; stator transients; steady-state analysis techniques; temporary isolation; transient components; Capacitance; Circuit breakers; Circuit simulation; Computational modeling; Industrial power systems; Power system modeling; Power system simulation; Power system transients; Steady-state; Voltage;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Industry Applications Society Annual Meeting, 1994., Conference Record of the 1994 IEEE
  • Conference_Location
    Denver, CO
  • Print_ISBN
    0-7803-1993-1
  • Type

    conf

  • DOI
    10.1109/IAS.1994.377721
  • Filename
    377721