DocumentCode :
1302116
Title :
BRDF models to predict spectral reflectance and emissivity in the thermal infrared
Author :
Snyder, William C. ; Wan, Zhengming
Author_Institution :
GDE Syst. Inc., San Diego, CA., USA
Volume :
36
Issue :
1
fYear :
1998
fDate :
1/1/1998 12:00:00 AM
Firstpage :
214
Lastpage :
225
Abstract :
This paper presents modifications to the linear kernel bidirectional reflectance distribution function (BRDF) models from Roujean et al. and from Wanner et al. that extend the spectral range into the thermal infrared (TIR). The present authors application is to synthesize the TIR optical properties of a scene pixel from laboratory component measurements. The angular reflectance and emissivity are needed to convert the radiance of a pixel as measured from space to land-surface temperature. The kernel models will be applied to develop a look-up table for the MODIS land-surface temperature algorithm to estimate the spectral, angular scene emissivity from land cover classification. A shrub scene and a dense canopy scene illustrate qualitative differences in angular emissivity that would not be evident without the kernel model modifications. They conclude that the modified models provide a simple and efficient way to estimate scene optical properties over a wide spectral range
Keywords :
geophysical techniques; infrared imaging; remote sensing; BRDF model; IR imaging; MODIS; angular reflectance; bidirectional reflectance distribution function; dense canopy; emissivity; geophysical measurement technique; infrared imaging; land cover classification; land surface; linear kernel model; remote sensing; shrub scene; spectral reflectance; terrain mapping; thermal infrared; vegetation mapping; Bidirectional control; Distribution functions; Extraterrestrial measurements; Infrared spectra; Kernel; Land surface temperature; Layout; Optical devices; Predictive models; Reflectivity;
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
Publisher :
ieee
ISSN :
0196-2892
Type :
jour
DOI :
10.1109/36.655331
Filename :
655331
Link To Document :
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