DocumentCode :
1024919
Title :
Non-Lambertian Effects on Remote Sensing of Surface Reflectance and Vegetation Index
Author :
Lee, Tae Young ; Kaufman, Yoram J.
Author_Institution :
Department of Astronomy and Meteorology, Yonsei University, Seodaemoon-ku, Seoul, Korea
Issue :
5
fYear :
1986
Firstpage :
699
Lastpage :
708
Abstract :
This paper discusses the effects of non-Lambertian reflection from a homogeneous surface on remote sensing of the surface reflectance and vegetation index from a satellite. Remote measurement of the surface characteristics is perturbed by atmospheric scattering of sun light. This scattering tends to smooth the angular dependence of non-Lambertian surface reflectances, an effect that is not present in the case of Lambertian surfaces. This effect is calculated to test the validity of a Lambertian assumption used in remote sensing. For the three types of vegetations considered in this study, the assumption of Lambertian surface can be used satisfactorily in the derivation of surface reflectance from remotely measured radiance for a view angle outside the backscattering region. Within the backscattering region, however, the use of the assumption can result in a considerable error in the derived surface reflectance. Accuracy also deteriorates with increasing solar zenith angle. The angular distribution of the surface reflectance derived from remote measurements is smoother than that at the surface. The effect of surface non-Lambertianity on remote sensing of vegetation index is very weak. Since the effect is similar in the visible and near infrared part of the solar spectrum for the vegetations treated in this study, it is canceled in deriving the vegetation index. The effect of the diffuse skylight on surface reflectance measurements at ground level is also discussed.
Keywords :
Atmospheric measurements; Backscatter; Light scattering; Optical reflection; Reflectivity; Remote sensing; Satellites; Sun; Surface treatment; Vegetation;
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
Publisher :
ieee
ISSN :
0196-2892
Type :
jour
DOI :
10.1109/TGRS.1986.289617
Filename :
4072527
Link To Document :
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