Infrared and Laser Engineering, Volume. 51, Issue 7, 20210866(2022)

Development of infrared hyperspectral remote sensing imaging and application of gas detection (invited)

Chunlai Li1,2, Chengyu Liu1, Jian Jin1, Rui Xu1, Gang Lv1, Jianan Xie1, Liyin Yuan1, Shijie Liu2, and Jianyu Wang1,2、*
Author Affiliations
  • 1Key Laboratory of Space Active Optoelectronic Technology, Chinese Academy of Sciences, Shanghai Institute of Technical Physics, Chinese Academy of Sciences, Shanghai 200083, China
  • 2Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences, Hangzhou 310024, China
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    Figures & Tables(9)
    [in Chinese]
    Photos of domestic and foreign infrared hyperspectral imagers
    Infrared absorption spectra of different gases[21]
    Schematic map of airborne detection of gas plume
    Schematic map of ground detection of gas plume
    Process of gas detection using infrared hyperspectral technology
    [in Chinese]
    Actual cases of gas detection with infrared hyperspectral imager
    • Table 1. Parameters of domestic and foreign infrared hyperspectral imagers[2, 8-17]

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      Table 1. Parameters of domestic and foreign infrared hyperspectral imagers[2, 8-17]

      InstrumentYear/ Country Spectral range/ μm Spectral resolution BandsIFOV/ mrad FOV/ (°) SenstivitySpectral- splitting Background radiation suppression
      SEBASS1995/USAMWIR:2.0-5.2 LWIR:7.8-13.5 MWIR:25 nm LWIR:50 nm MWIR:128 LWIR:128 1.07.3MWIR:0.008 W·μm−1·m−2·sr−1LWIR:0.012 W·μm−1·m−2·sr−1Spherical prism/conical mirrorLiquid helium refrigeration
      AHI1998/USA7.5-11.5125 nm/100 nm32/2561.813.0<0.1 KFlat gratingCooled linear variable filter/The upgraded version with liquid nitrogen refrigeration
      LWHIS2003/USA8-12.535 nm256/1280.96.50.035 KFlat gratingCool the whole system with liquid nitrogen refrigeration
      Hyper-Cam2009/CanadaMWIR:3-5 LWIR:8-11.8 <0.25 cm−12560.356.4×5.1MWIR:4 nW/cm2·sr·cm−1LWIR:20 nW/cm2·sr·cm−1Fourier transform spectrometerNo refrigeration
      MAKO2010/USA7.8-13.447 nm128214.70.05 KConcave gratingCool the spectrometer with liquid helium
      MAGI2011/USA7.1-12.7100 nm320.53±42Concave gratingCool the spectrometer with a refrigerator
      Sieleters2011/FranceMWIR:3-5.3 LWIR:8-11.5 MWIR:11 cm−1LWIR:5 cm−10.25Fourier transform spectrometerCool the spectrometer with liquid nitrogen
      AISA-OWLFinland7.7-12.3100 nm840.08432.30.2 KPrism-Grating-PrismFilter suppresses background radiation
      HyTES2016/USA7.5-12.018 nm2561.7500.2 KConcave gratingCool the spectrometer with a refrigerator
      MAKO Updated2016/USA7.8-13.444 nm1282±56.46 mW/(m2·sr·μm) Concave gratingCool the spectrometer with liquid nitrogen
      ATHIS2016/China8-12.538 nm1551400.17 KFlat gratingCool the spectrometer with a refrigerator
      SIHIS2020/ChinaMWIR:3-5 LWIR:8-12.5 MWIR:30 nm LWIR:50 nm MWIR:167 LWIR:163 114MWIR:0.05 K LWIR:0.15 K Flat gratingCool the spectrometer with a refrigerator
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    Chunlai Li, Chengyu Liu, Jian Jin, Rui Xu, Gang Lv, Jianan Xie, Liyin Yuan, Shijie Liu, Jianyu Wang. Development of infrared hyperspectral remote sensing imaging and application of gas detection (invited)[J]. Infrared and Laser Engineering, 2022, 51(7): 20210866

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    Paper Information

    Category: Invited paper

    Received: Nov. 20, 2021

    Accepted: --

    Published Online: Dec. 20, 2022

    The Author Email: Jianyu Wang (jywang@mail.sitp.ac.cn)

    DOI:10.3788/IRLA20210866

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