• DocumentCode
    1418340
  • Title

    A tracking time domain simulator for real-time transient stability analysis

  • Author

    La Scala, M. ; Sbrizzai, R. ; Torelli, F. ; Scarpellini, P.

  • Author_Institution
    Politecnico di Bari, Italy
  • Volume
    13
  • Issue
    3
  • fYear
    1998
  • fDate
    8/1/1998 12:00:00 AM
  • Firstpage
    992
  • Lastpage
    998
  • Abstract
    Real-time transient stability analysis requires analysis of hundreds of contingencies in tens of minutes using on-line data from the state estimation. The final objective is to present timely information about transfer limits and stability margins and eventually implement corrective actions. In this paper, we assume that the dynamic contingency analysis (DCA) has to be repeated every 15 minutes. During this period of time the loading and configuration conditions of the system change significantly but not drastically. We verify that the set of the relevant contingencies remains almost the same in the time interval comprised between two cycles of the functions associated to DSA. Parallel-in-time formulated algorithms can be used in tracking the load conditions in real time adopting as initial guess for the simulation of each contingency, the trajectories obtained for the same contingency at the previous cycle of DSA functions (that is the ones calculated in the previous 15 minutes). In this way, the information obtained In a previous cycle of DCA is not lost completely as in step-by step algorithms. The feasibility of the approach has been tested on the Italian 380-220 kV transmission system operated by ENEL SPA. A parallel implementation of the approach on an nCUBE multiprocessor is reported
  • Keywords
    digital simulation; multiprocessing systems; power system analysis computing; power system stability; power system state estimation; power system transients; time-domain analysis; 220 kV; 380 kV; ENEL SPA; Italian transmission system; corrective actions; dynamic contingency analysis; dynamic security assessment; nCUBE multiprocessor; parallel-in-time formulated algorithms; real-time transient stability analysis; stability margins; state estimation; tracking time domain simulator; transfer limits; Analytical models; Parallel processing; Power system dynamics; Power system security; Power system transients; Stability analysis; System testing; Time domain analysis; Trajectory; Transient analysis;
  • fLanguage
    English
  • Journal_Title
    Power Systems, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0885-8950
  • Type

    jour

  • DOI
    10.1109/59.709088
  • Filename
    709088