• DocumentCode
    741593
  • Title

    Using Improved Power Electronics Modeling and Turbine Control to Improve Wind Turbine Reliability

  • Author

    Ting Lei ; Barnes, Mike ; Smith, Sandy ; Sung-ho Hur ; Stock, Adam ; Leithead, William E.

  • Author_Institution
    Dept. of Electr. & Electron. Eng., Univ. of Manchester, Manchester, UK
  • Volume
    30
  • Issue
    3
  • fYear
    2015
  • Firstpage
    1043
  • Lastpage
    1051
  • Abstract
    Improving offshore wind turbine reliability is a key industry goal to improve the availability of this renewable energy generation source. The semiconductor devices in the wind turbine power converter are traditionally considered as the most sensitive and important components to achieve this and managing their thermomechanical stressing is vital, since this is one of their principal long-term aging mechanisms. Conventional deterministic reliability prediction methods used in industrial applications are not suitable for wind turbine applications, due to the stochastic nature of the wind speed. This paper develops an electrothermal model of the power devices, which is integrated with a wind turbine system model for the investigation of power converter thermal cycling under various operating conditions. The model has been developed to eliminate the problems of pulse width modulation switching, substantially reducing simulation time. The model is used to improve the current controller tuning method to reduce thermal stresses suffered by the converter during a grid fault. The model is finally used to design a control method to alleviate a key problem of the doubly fed induction generator-severe thermal cycling caused during operation near synchronous speed.
  • Keywords
    asynchronous generators; electric current control; machine control; offshore installations; power electronics; power generation reliability; pulse width modulation; thermal stresses; wind turbines; current controller tuning; doubly fed induction generator; electrothermal model; grid fault; long-term aging mechanism; offshore wind turbine reliability; power converter; power electronics; pulse width modulation switching; renewable energy generation source; thermal cycling; thermal stresses; thermomechanical stressing; turbine control; wind speed; Heat sinks; Insulated gate bipolar transistors; Load modeling; Mathematical model; Reliability; Switches; Wind turbines; Electrothermal modeling; power device reliability; power systems computer aided design / electro-magnetic transients including dc (PSCAD/EMTDC); power systems computer aided design???/???electro-magnetic transients including dc (PSCAD/EMTDC); wind turbine power converter (WTPC);
  • fLanguage
    English
  • Journal_Title
    Energy Conversion, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0885-8969
  • Type

    jour

  • DOI
    10.1109/TEC.2015.2422792
  • Filename
    7101851