• DocumentCode
    3567327
  • Title

    A novel soft intelligent calibrator for low-velocity hot bulb anemometers

  • Author

    Hongsheng Zhang ; Yunze Li ; Mingliang Zhong ; Miao Li ; Wei Guo ; Yang Liu

  • Author_Institution
    Sch. of Aeronaut. Sci. & Eng., Beihang Univ., Beijing, China
  • fYear
    2015
  • Firstpage
    1597
  • Lastpage
    1602
  • Abstract
    The low-velocity hot bulb anemometers is a type of thermal wind velocity sensor and they are widely used in various fields, the accuracy and credibility of their measurements are of great importance for their applications, therefore, accurate calibration is an effective guarantee for the measure accuracy. Recently, for low-velocity hot bulb anemometers, most relevant literatures have focused on the calibrations through parameters modification implanted in the hardware during the production process, and the detailed measurement principle of the hot bulb anemometers is needful to execute the parameters modification work, which restricted their application. This paper proposed a soft intelligent calibrator for low-velocity hot bulb anemometers via Polynomial fit method and back-propagation neural networks, and the wind velocity calibration principle of the hot bulb anemometers was given with the aid of the sample data. Two hot bulb anemometers with different pre-calibration relative characteristics were calibrated, the measure precision of the wind velocity were improved, and the post-calibration relative errors were less than the pre-calibration relative errors. This soft calibrator provides ample evidence for its effectiveness of calibration performance for the hot bulb anemometers, which could also be applied for calibrating sensors in other fields.
  • Keywords
    anemometers; backpropagation; calibration; intelligent sensors; neural nets; polynomials; temperature sensors; thermal variables measurement; velocity measurement; backpropagation neural network; low-velocity hot bulb anemometer; polynomial fit method; post-calibration relative error; pre-calibration relative error; production process; soft intelligent calibrator; thermal wind velocity sensor; wind velocity calibration principle; wind velocity measurement; Biomedical measurement; Calibration; Fluid flow measurement; Neurons; Training; Velocity measurement; Wind speed; backpropagation neural network; hot bulb anemometer; soft intelligent calibrator; wind velocity measurement;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Advanced Intelligent Mechatronics (AIM), 2015 IEEE International Conference on
  • Type

    conf

  • DOI
    10.1109/AIM.2015.7222771
  • Filename
    7222771