Title :
Use of a One-Dimensional Variational Retrieval to Diagnose Estimates of Infrared and Microwave Surface Emissivity Over Land for ATOVS Sounding Instruments
Author :
Ruston, Benjamain ; Weng, Fuzhong ; Yan, Banghua
Author_Institution :
Marine Meteorol. Div., Naval Res. Lab., Monterey, CA
Abstract :
A 1-D variational retrieval of surface emissivity is developed and applied for the Advanced Microwave Sounding Unit modules A and B, along with the High-resolution Infrared Radiation Sounder. This algorithm offers simultaneous retrieval of infrared and microwave emissivity and increases the separation of the emissivity and land surface temperature signals. The initial estimate of the emissivity for the surface-sensitive channels is made by a combination of physical and empirical microwave emissivity models and, in the infrared, by indexing laboratory measurements to vegetation databases. It is found that the initial estimates of emissivity for snow-free vegetated land areas are within 1% of the retrieved infrared values and, in the microwave, within 4% for all snow-free points and within 2% for the vast majority. The emissivity for snow-covered and sea-ice areas remains problematic, and further investigation is required. It is also shown that the average zenith angle dependence of the emissivity is less than 0.0024 for infrared wavelengths and less than 0.0055 for microwave frequencies if the viewing zenith angles greater than 40 are neglected.
Keywords :
emissivity; geophysical techniques; information retrieval; remote sensing; variational techniques; 1D variational retrieval; ATOVS sounding instruments; Advanced Microwave Sounding Unit modules; High-resolution Infrared Radiation Sounder; infrared surface emissivity; microwave surface emissivity; Databases; Indexing; Instruments; Laboratories; Land surface; Land surface temperature; Microwave measurements; Ocean temperature; Sea surface; Vegetation; Advanced Microwave Sounding Unit module A (AMSU-A); Advanced Microwave Sounding Unit module B (AMSU-B); HIRS/4; High-resolution Infrared Radiation Sounder (HIRS)/3; infrared; microwave; remote sensing; satellite applications; surface emissivity;
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
DOI :
10.1109/TGRS.2007.910219