• DocumentCode
    737639
  • Title

    Assessment and Optimization of the Transient Response of Proportional-Resonant Current Controllers for Distributed Power Generation Systems

  • Author

    Vidal, Ana ; Freijedo, Francisco D. ; Yepes, Alejandro ; Fernandez-Comesana, Pablo ; Malvar, Jano ; Lopez, Oscar ; Doval-Gandoy, Jesus

  • Author_Institution
    Dept. of Electron. Technol., Univ. of Vigo, Vigo, Spain
  • Volume
    60
  • Issue
    4
  • fYear
    2013
  • fDate
    4/1/2013 12:00:00 AM
  • Firstpage
    1367
  • Lastpage
    1383
  • Abstract
    The increasing number of distributed power generation systems (DPGSs) is changing the traditional organization of the electrical network. An important part of these DPGSs is based on renewable energy sources. In order to guarantee an efficient integration of renewable-based generation units, grid codes must be fulfilled. Their most demanding requirements, such as low-voltage ride-through and grid support, need a really fast transient response of the power electronics devices. In this manner, the current controller speed is a key point. This paper proposes a methodology to assess and optimize the transient response of proportional-resonant current controllers. The proposed methodology is based on the study of the error signal transfer function roots by means of pole-zero plots. Optimal gains are set to achieve fast and nonoscillating transient responses, i.e., to optimize the settling time. It is proved that optimal gain selection results from a tradeoff between transients caused by reference changes and transients caused by changes at the point of common coupling. Experimental results obtained by means of a three-phase voltage source converter prototype validate the approach. Short transient times are achieved even when tests emulate very demanding realistic conditions: a +90° phase-angle jump in the current reference and a “type C” voltage sag at the point of common coupling.
  • Keywords
    distributed power generation; electric current control; integration; optimisation; power generation control; power grids; renewable energy sources; transient response; DPGS; distributed power generation system; efficient integration; electrical network; error signal transfer function roots; grid codes; grid support; low-voltage ride-through; optimization; pole-zero plots; power electronics devices; proportional-resonant current controllers; renewable energy sources; renewable-based generation units; three-phase voltage source converter prototype; transient response; Current control; Frequency control; Poles and zeros; Power system stability; Resonant frequency; Transient analysis; Transient response; AC/DC power conversion; current control; dc/ac power conversion; distributed power generation;
  • fLanguage
    English
  • Journal_Title
    Industrial Electronics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0278-0046
  • Type

    jour

  • DOI
    10.1109/TIE.2012.2188257
  • Filename
    6153368