DocumentCode :
1159012
Title :
Analysis of Surface Roughness Heterogeneity and Scattering Behavior for Radar Measurements
Author :
Zribi, Mehrez ; Baghdadi, Nicolas ; Guérin, Christine
Author_Institution :
Centre d´´ Etude des Environments Terrestre et Planetaires, Velizy
Volume :
44
Issue :
9
fYear :
2006
Firstpage :
2438
Lastpage :
2444
Abstract :
The use of a theoretical backscatter model to analyze medium to low spatial resolution microwave data is still very complicated, particularly because of the difficulty in defining a unique roughness parameter, capable of adequately representing heterogeneous terrain. In this paper, an approach is proposed for roughness analysis and the modeling of backscattering, under conditions of surface heterogeneity. This paper is based on the use of a semiempirical backscattering model, defined with a single roughness parameter Zs=s2/l (s being the root mean square surface height and l the correlation length). The proposed backscattering model has been validated with integral equation model simulations, for high radar incidence angles, and within its domain of roughness validity. A range of experimental measurements was used to validate the model expressions. The effective low spatial resolution roughness, inferred from signals backscattered from a surface of heterogeneous roughness, is defined for different roughness classes
Keywords :
backscatter; geophysical techniques; radar; soil; surface topography measurement; topography (Earth); bare soil; correlation length; heterogeneous terrain; integral equation model simulations; low spatial resolution roughness; microwave data; radar incidence angles; radar measurements; root mean square surface height; roughness analysis; roughness classes; roughness parameter; roughness validity; scattering behavior; semiempirical backscattering model; surface roughness heterogeneity; theoretical backscatter model; Backscatter; Radar measurements; Radar scattering; Root mean square; Rough surfaces; Soil; Solid modeling; Spaceborne radar; Spatial resolution; Surface roughness; Heterogeneity; modeling; roughness; surface scattering;
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
Publisher :
ieee
ISSN :
0196-2892
Type :
jour
DOI :
10.1109/TGRS.2006.873742
Filename :
1677753
Link To Document :
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