• DocumentCode
    1313781
  • Title

    Multisite Calibration Tracking for FY-3A MERSI Solar Bands

  • Author

    Sun, Ling ; Hu, Xiuqing ; Guo, Maohua ; Xu, Na

  • Author_Institution
    Nat. Satellite Meteorol. Center, China Meteorol. Adm., Beijing, China
  • Volume
    50
  • Issue
    12
  • fYear
    2012
  • Firstpage
    4929
  • Lastpage
    4942
  • Abstract
    The MEdium-Resolution Spectral Imager (MERSI), onboard the second-generation Chinese polar-orbit meteorological satellite FY-3A, is a MODIS-like sensor with 19 solar bands and one thermal infrared band. Although there is a visible onboard calibration device, it can only be used for tracking temporal instrument degradation. The vicarious calibration (VC) campaign at the Dunhuang site, conducted once a year, has been the main postlaunch absolute radiometric calibration method for MERSI in the solar bands. To increase the in-flight calibration frequency, a multisite radiometric calibration tracking method is presented. This method relies on simulated radiation over several stable sites, and a daily calibration updating model is built from long-term trending of calibration coefficient series. The MERSI calibration reference is evaluated against the observations of Aqua MODIS, showing mean relative biases within 5% from 0.4 to 2.1 μm . The short-wave channels of MERSI are found to experience large degradation, particularly the 412-nm band with an annual degradation rate of 9.7%, whereas the red and near-infrared bands are relatively stable with annual degradation rates within ±1%. Several approaches have been used to analyze the reliability of MERSI calibration results. A comparison of the calibration slopes shows that the relative biases between the multisite method and the annual Dunhuang VC campaign are below 3.8%. Aqua MODIS is used as a reference to monitor the data quality of the recalibrated MERSI. A double-difference analysis shows that the mean relative biases are almost within 5% over stable deserts, and the synchronous nadir observation analysis also reveals good agreement.
  • Keywords
    calibration; geophysical techniques; infrared imaging; radiometers; remote sensing; tracking; Aqua MODIS; Dunhuang site; FY-3A MERSI solar band; MERSI calibration reference; MEdium-Resolution Spectral Imager; MODIS-like sensor; calibration coefficient series; daily calibration updating model; data quality monitoring; double-difference analysis; in-flight calibration frequency; long-term trending; mean relative bias; multisite calibration tracking; multisite radiometric calibration tracking method; near-infrared band; postlaunch absolute radiometric calibration method; radiation simulation; second-generation Chinese polar-orbit meteorological satellite; short-wave channel; stable desert; synchronous nadir observation analysis; temporal instrument degradation tracking; thermal infrared band; vicarious calibration campaign; visible onboard calibration device; Calibration; Degradation; Detectors; Satellites; FengYun-3A (FY-3A) MEdium-Resolution Spectral Imager (MERSI); multisite; radiative transfer modeling (RTM); reflective solar bands (RSBs); vicarious calibration (VC);
  • fLanguage
    English
  • Journal_Title
    Geoscience and Remote Sensing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0196-2892
  • Type

    jour

  • DOI
    10.1109/TGRS.2012.2215613
  • Filename
    6327657