• Infrared and Laser Engineering
  • Vol. 49, Issue 5, 20190117 (2020)
Chunlai Li, Gang Lv, Liyin Yuan, Yueming Wang, Jian Jin, Yan Xu, Chengyu Liu, Zhiping He, and Jianyu Wang
Author Affiliations
  • Key Laboratory of Space Active Optoelectronic Technology, Chinese Academy of Sciences, Shanghai Institute of Technical Physics, Chinese Academy of Sciences, Shanghai 200083, China
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    DOI: 10.3788/IRLA20190117 Cite this Article
    Chunlai Li, Gang Lv, Liyin Yuan, Yueming Wang, Jian Jin, Yan Xu, Chengyu Liu, Zhiping He, Jianyu Wang. Laboratory calibration and application of the airborne thermal infrared hyperspectral imager (ATHIS)[J]. Infrared and Laser Engineering, 2020, 49(5): 20190117 Copy Citation Text show less

    Abstract

    The cryogenic spectrometer for the airborne thermal infrared hyperspectral imager (ATHIS) was designed in this paper. In order to detect the spectral recognition capability of the ATHIS, detailed spectral characteristics tests were carried out in the laboratory. The method of CO2 laser combined with high precision monochromator was proposed to achieve the absolute spectral calibration accuracy of 0.8 nm. Methane gas was tested in the laboratory, and the results show that methane gas could be accurately identified. Twice flight tests of the ATHIS was carried out based on those experiments. The data processing results show that thermal infrared hyperspectral imager can effectively carry out classification and identification of typical urban buildings and effective monitoring of industrial chemical gas emissions. The above preliminary application shows that the ATHIS has excellent spectrum recognition power, and the primary business application prospect. The follow-up instrument will carry out the researches on the enhancement of radiation quantification.
    Chunlai Li, Gang Lv, Liyin Yuan, Yueming Wang, Jian Jin, Yan Xu, Chengyu Liu, Zhiping He, Jianyu Wang. Laboratory calibration and application of the airborne thermal infrared hyperspectral imager (ATHIS)[J]. Infrared and Laser Engineering, 2020, 49(5): 20190117
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