• DocumentCode
    672915
  • Title

    Wind Random Signal Processing Strategy Based on Weighted Entropy

  • Author

    Dekun Yue ; Yongmin Jiang

  • Author_Institution
    Dept. of Electr. & Electron. Eng., Chengdu Technol. Univ., Chengdu, China
  • fYear
    2013
  • fDate
    16-17 Nov. 2013
  • Firstpage
    86
  • Lastpage
    90
  • Abstract
    Over the last few years, wind power is the fastest growing, most widely used of the emerging renewable energy. Due to the randomness of wind power and it is not controllable, wind power is intermittent and volatility. With the increase of proportion of wind power in power grid, control the influence of wind power to power grid system frequency stability, becomes the key to ensure system stability and reliability problems. To effectively explore the wind itself implied the inherent law of random variables, this paper employed weighted entropy uncertainty measure theory, put forward multiple signal fusion method based on weighted entropy, to measure random events of the role of wind power system, power grid events to the connotation of the single attribute weight. Describes the calculating process of this method through examples and computational results, shows the frequency of random events and the limit of the inner link, for the correct decision and the selection of treatment methods to provide the basis.
  • Keywords
    power grids; signal processing; wind power; wind power plants; power grid system frequency stability; renewable energy; signal fusion method; weighted entropy uncertainty measure theory; wind power system; wind random signal processing strategy; Entropy; Frequency control; Frequency measurement; Generators; Power grids; Power system stability; Wind power generation; prediction random; variable frequency; weighted entropy; wind power system;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Information Technology and Applications (ITA), 2013 International Conference on
  • Conference_Location
    Chengdu
  • Print_ISBN
    978-1-4799-2876-7
  • Type

    conf

  • DOI
    10.1109/ITA.2013.26
  • Filename
    6709942