• DocumentCode
    1396344
  • Title

    Vicarious Calibration of the GOSAT Sensors Using the Railroad Valley Desert Playa

  • Author

    Kuze, Akihiko ; Brien, D. M O ; Taylor, T.E. ; Day, Jason O. ; Dell, Christopher W O ; Kataoka, Fumie ; Yoshida, Mayumi ; Mitomi, Yasushi ; Bruegge, Carol J. ; Pollock, Harold ; Basilio, Ralph ; Helmlinger, Mark ; Matsunaga, Tsuneo ; Kawakami, Shuji ; Shi

  • Author_Institution
    Japan Aerosp. Exploration Agency, Tsukuba, Japan
  • Volume
    49
  • Issue
    5
  • fYear
    2011
  • fDate
    5/1/2011 12:00:00 AM
  • Firstpage
    1781
  • Lastpage
    1795
  • Abstract
    Japan´s Greenhouse Gases Observing Satellite (GOSAT) was successfully launched into a sun-synchronous orbit on January 23, 2009 to monitor global distributions of carbon dioxide ( CO2) and methane (CH4). GOSAT carries two instruments. The Thermal And Near-infrared Sensor for carbon Observation Fourier-Transform Spectrometer (TANSO-FTS) measures reflected radiances in the 0.76 μm oxygen band and in the weak and strong CO2 bands at 1.6 and 2.0 μm. The TANSO Cloud and Aerosol Imager (TANSO-CAI) uses four spectral bands at 0.380, 0.674, 0.870, and 1.60 μm to identify clear soundings and to provide cloud and aerosol optical properties. Vicarious calibration was performed at Railroad Valley, Nevada, in the summer of 2009. The site was chosen for its flat surface and high spectral reflectance. In situ measurements of geophysical parameters, such as surface reflectance, aerosol optical thickness, and profiles of temperature, pressure, and humidity, were acquired at the overpass times. Because the instantaneous field of view of TANSO-FTS is large (10.5 km at nadir), the spatially limited reflectance measurements at the field sites were extrapolated to the entire footprint using independent satellite data. During the campaign, six days of measurements were acquired from two different orbit paths. Spectral radiances at the top of the atmosphere were calculated using vector radiative transfer models coupled with ground in situ data. The agreement of the modeled radiance spectra with those measured by the TANSO-FTS is within 7%. Significant degradations in responsivity since launch have been detected in the short-wavelength bands of both TANSO-FTS and TANSO-CAI.
  • Keywords
    Fourier transform spectrometers; aerosols; atmospheric composition; atmospheric humidity; atmospheric measuring apparatus; atmospheric pressure; atmospheric techniques; atmospheric temperature; calibration; clouds; reflectivity; remote sensing; AD 2009 01 23; GOSAT sensor calibration; Greenhouse Gases Observing Satellite; Nevada; Railroad Valley Desert playa; TANSO Cloud and Aerosol Imager; TANSO Fourier Transform Spectrometer; TANSO-CAI; TANSO-FTS; Thermal and Near Infrared Sensor for Carbon Observation; USA; aerosol optical properties; aerosol optical thickness; atmospheric humidity profile; atmospheric pressure profile; atmospheric temperature profile; cloud optical properties; global carbon dioxide distribution monitoring; global methane distribution monitoring; instantaneous field of view; reflected radiance measurement; spectral reflectance; surface reflectance; wavelength 0.380 mum; wavelength 0.674 mum; wavelength 0.76 mum; wavelength 0.870 mum; wavelength 1.60 mum; wavelength 2.0 mum; Aerosols; Calibration; Computer aided manufacturing; Extraterrestrial measurements; Optical surface waves; Temperature measurement; Variable speed drives; Carbon dioxide $(hbox{CO}_{2})$; Greenhouse Gases Observing Satellite (GOSAT); thermal and near-infrared sensor for carbon observation (TANSO); vicarious calibration;
  • fLanguage
    English
  • Journal_Title
    Geoscience and Remote Sensing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0196-2892
  • Type

    jour

  • DOI
    10.1109/TGRS.2010.2089527
  • Filename
    5659476