DocumentCode :
1186864
Title :
Rapid radiative transfer model for AMSU/HSB channels
Author :
Rosenkranz, Philip W.
Author_Institution :
Res. Lab. of Electron., Massachusetts Inst. of Technol., Cambridge, MA, USA
Volume :
41
Issue :
2
fYear :
2003
Firstpage :
362
Lastpage :
368
Abstract :
The atmospheric transmittance model for the Advanced Microwave Sounding Unit-A (AMSU-A) and the Humidity Sounder for Brazil (HSB) channels on the Aqua spacecraft uses a polynomial approximation to the temperature dependence of oxygen-band opacity within atmospheric layers. It uses lookup tables to calculate local water-vapor line intensity and pressure-broadening parameters as well as contributions to absorption from the water-vapor continuum, distant lines, and cloud liquid water. The algorithm includes water-line self-broadening and the magnetic-field effect on AMSU-A channel 14. The microwave surface emission model is based on a preliminary classification of the surface type, with subsequent adjustments to the emissivity spectrum that are obtained from the retrieval algorithm. A simple approximate correction for surface nonspecularity is included. The algorithm has been tested by comparisons to a line-by-line calculation and to measurements made by the NOAA-15 AMSU-A.
Keywords :
atmospheric humidity; microwave measurement; radiative transfer; remote sensing; AMSU-A channel 14; Advanced Microwave Sounding Unit-A; Aqua spacecraft; HSB; Humidity Sounder for Brazil; NOAA-15 AMSU-A; atmospheric layers; atmospheric microwave transmittance; atmospheric transmittance model; cloud liquid water; emissivity spectrum; magnetic field effect; microwave emissivity; microwave surface emission model; oxygen-band opacity; polynomial approximation; pressure-broadening parameters; rapid radiative transfer model; retrieval algorithm; surface nonspecularity; surface type classification; temperature dependence; water-line self-broadening; water-vapor continuum; water-vapor line intensity; Atmospheric modeling; Clouds; Humidity; Integral equations; Polynomials; Resonance; Space vehicles; Surface treatment; Table lookup; Temperature dependence;
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
Publisher :
ieee
ISSN :
0196-2892
Type :
jour
DOI :
10.1109/TGRS.2002.808323
Filename :
1196053
Link To Document :
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