• DocumentCode
    603944
  • Title

    Modeling and control of large salient-pole synchronous hydro generators and stability issues in isolated production mode

  • Author

    Kawkabani, B. ; Nicolet, C. ; Schwery, A.

  • Author_Institution
    Electr. Machinery Group, Ecole Polytech. Fed. de Lausanne, Lausanne, Switzerland
  • fYear
    2013
  • fDate
    11-12 March 2013
  • Firstpage
    148
  • Lastpage
    157
  • Abstract
    This paper presents the modeling, simulation and analysis of the dynamic behavior of a hydroelectric power plant of 2×343 MVA including hydraulic system, electrical installations, rotating inertias and control systems. First, the modeling of the electrical and hydraulic systems is described. The electrical system is constituted by a salient-pole synchronous generator with its ST1A excitation system model and PSS2B power system stabilizer model. Then, the set of parameters of the turbine speed governor of the hydroelectric power plant is determined with a specific identification procedure to achieve stable operation for different cases as interconnected or isolated operation. The analysis of the stability of the power plant is investigated through time domain simulations for different sets of controllers´ parameters and for different cases (simulation of the only electric part and of the whole hydroelectric system).
  • Keywords
    hydraulic systems; hydroelectric power stations; machine control; power generation control; synchronous generators; PSS2B power system stabilizer model; ST1A excitation system model; control systems; controller parameters; dynamic behavior; electrical installations; hydraulic system; hydroelectric power plant; interconnected operation; isolated operation; isolated production mode; large salient-pole synchronous hydro generators Modeling; large salient-pole synchronous hydro generators control; salient-pole synchronous generator; stability issues; time domain simulations; turbine speed; Analytical models; Biological system modeling; Hydraulic systems; Power system stability; Transfer functions; Turbines; Hydroelectric power generation; generators; numerical simulation; power system stability; regulators; servomotors; velocity control; voltage control;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electrical Machines Design Control and Diagnosis (WEMDCD), 2013 IEEE Workshop on
  • Conference_Location
    Paris
  • Print_ISBN
    978-1-4673-5656-5
  • Electronic_ISBN
    978-1-4673-5657-2
  • Type

    conf

  • DOI
    10.1109/WEMDCD.2013.6525175
  • Filename
    6525175