• DocumentCode
    257540
  • Title

    Performance characteristics of a doubly-fed generator on a test-rig with full-scale converter-based grid emulator

  • Author

    Averous, Nurhan Rizqy ; Stagge, Hanno ; De Doncker, Rik W.

  • Author_Institution
    E.ON Energy Res. Center, RWTH Aachen Univ., Aachen, Germany
  • fYear
    2014
  • fDate
    24-26 July 2014
  • Firstpage
    1
  • Lastpage
    8
  • Abstract
    One key factor for a successfull penetration of wind turbine (WT) products into the market is certification. For the development and certification purpose, a 1 MW test-rig for WT nacelles has been developed at RWTH Aachen University which offers the possibility of WT testing with emulated environmental conditions. In this paper, the performance characteristics of a doubly-fed-generator (DFG) on the developed test-rig is discussed. Firstly, the effect of filter impedance of the grid emulator on the controller performance is analyzed under normal grid conditions. Secondly, the transient characteristic of a DFG WT considering the grid emulator setup is identified. A simulation is performed to verify the analysis. Under normal grid condition, the impedance of the grid emulator does not influence the controller of the DFG WT significantly. For fault-ride-through (FRT) tests with a grid emulator, only the series inductive elements of the grid emulator´s filter influence the transient characteristic of the DFG WT. The developed 1-MW test-rig fulfills the technical requirement for FRT test in terms of the grid impedance.
  • Keywords
    AC-DC power convertors; electric generators; induction motors; power grids; wind turbines; DFG WT; RWTH Aachen University; doubly-fed generator; fault-ride-through tests; filter impedance; full-scale converter-based grid emulator; grid impedance; power 1 MW; wind turbine nacilles; Current control; Impedance; Power grids; Rotors; Stability criteria; Stators; Wind turbines;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Power Electronics and Machines for Wind and Water Applications (PEMWA), 2014 IEEE Symposium
  • Conference_Location
    Milwaukee, WI
  • Print_ISBN
    978-1-4799-5137-6
  • Type

    conf

  • DOI
    10.1109/PEMWA.2014.6912221
  • Filename
    6912221