Infrared and Laser Engineering, Volume. 50, Issue 5, 20200394(2021)

Non-scanning wide range multi-wavelength imaging temperature measurement technology

Hongsheng Sun1,2, Xingang Liang1, Weigang Ma1, Chao Qiu2, and Wanglin Yang2
Author Affiliations
  • 1School of Aerospace, Tsinghua University, Beijing 100093, China
  • 2Beijing Zhenxing Institute of Metrology and Measurement, Beijing 100074, China
  • show less

    Multi-wavelength temperature measurement technology is an advanced radiation temperature measurement technology, which assumes a functional relationship between emissivity and spectrum. The measured multi-wavelength radiation signals and the function relationship between emissivity and spectral is used to obtain the true temperature and emissivity of the target. Multi-wavelength imaging temperature measurement technology detects the multi-wavelength radiation image information of the target and inversely calculates the temperature field distribution of the target. Aiming at the inadequacy of color CCD-based multi-wavelength imaging temperature measurement, such as adaptability of the nonlinear spectral emissivity model, and the narrow dynamic range of temperature measurement, and so on, a four-wavelength non-scanning imaging temperature measurement method based on non-equal ratio filter color splitting at the diaphragm was proposed. This method could effectively compress the band imaging bandwidth to form four narrow band imaging detections, and was suitable for wide dynamic range temperature field measurement of nonlinear spectral emissivity model targets. A four-wavelength imaging thermometer was developed according to the proposed temperature measurement method. The thermometer was mainly composed of a window, a neutral optical attenuator, a four-color filter, an optical objective lens, a visible/near infrared integrated sensor, a measurement control unit, and software. The real temperature distribution of the target was obtained according to the multi-wavelength warming algorithm by the thermometer software. The target high-temperature field (800-2500 ℃) was tested under laser heating conditions. The comparison between the measurement result and the thermocouple data shows that the error is less than 1%, and the method has higher accuracy and better dynamic range adaptability.

    Tools

    Get Citation

    Copy Citation Text

    Hongsheng Sun, Xingang Liang, Weigang Ma, Chao Qiu, Wanglin Yang. Non-scanning wide range multi-wavelength imaging temperature measurement technology[J]. Infrared and Laser Engineering, 2021, 50(5): 20200394

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Infrared technology and application

    Received: Oct. 10, 2020

    Accepted: --

    Published Online: Aug. 13, 2021

    The Author Email:

    DOI:10.3788/IRLA20200394

    Topics