研究目的
Investigating the VIIRS RSR differences between Suomi NPP and NOAA-20 for the Thermal Emissive Bands (TEB) including M12-M16 and their impacts on radiometric biases and potential striping in TEB.
研究成果
The study quantifies the impact of RSR differences on brightness temperature, finding odd/even detector-to-detector patterns and atmospheric dependencies. It is expected that the striping in NOAA-20 TEB will be 20% less than that in Suomi NPP TEB, so is the SST retrieval. Further assessment of the striping in NOAA-20 VIIRS TEB and evaluation of the impact of detector-level RSR on potential striping are planned.
研究不足
The simulation was carried out under clear-sky condition, and the surface was set to be ocean with specific temperatures for the six atmospheres, which may not cover all possible real-world conditions.
1:Experimental Design and Method Selection:
The study uses the Line-By-Line radiative transfer model (LBLRTM) at very high spectral resolution for convolving with the RSR of VIIRS on both satellites.
2:Sample Selection and Data Sources:
Six representative atmospheric profiles (tropical, mid-latitude summer, mid-latitude winter, sub-arctic summer, sub-arctic winter, and 1976 U.S. standard atmosphere) are used to perform VIIRS simulations.
3:List of Experimental Equipment and Materials:
LBLRTM V
4:8 released in August, 2017 is used for simulations. Experimental Procedures and Operational Workflow:
The original RSR provided at wavelength space is converted to wavenumber space, and interpolation is applied to ensure even wavenumber sampling. The LBLRTM is used to simulate the top of atmosphere (TOA) radiance at a spectral resolution of
5:01 cm-1 for VIIRS TEB M12-MData Analysis Methods:
The output TOA spectral radiance is convolved with the detector-level and band-averaged spectral RSR to get the in-band effective radiance, and the effective brightness temperature is converted from radiance using the pre-calculated VIIRS radiance to brightness temperature conversion look-up tables (LUTs).
独家科研数据包,助您复现前沿成果,加速创新突破
获取完整内容