DocumentCode
291753
Title
Comparison of measured and predicted scattering coefficients at 94 GHz
Author
Axelsson, S.R.J. ; Johnsson, K.-G. ; Tullsson, B.-E. ; Kjellgren, J. ; Carlström, A.
Author_Institution
Dept. of Microwave Syst., Saab Missiles AB, Linkoping, Sweden
Volume
3
fYear
1994
fDate
8-12 Aug 1994
Firstpage
1631
Abstract
In the summer of 1991, the backscattering from various background surfaces were measured at 94 GHz. A frequency modulated radar was mounted in a skylift and the backscattering coefficients at HH and VV were estimated at different angles of incidence. The test surfaces included bare sand and soil surfaces, an asphalt road and lawn. Soil-moisture was sampled and surface roughness profiles were recorded using a laser profiler. In the analysis of the data, the measured backscattering coefficients were compared with predictions from different kinds of scattering models, such as the geometric optics and physical optics approximations, the field perturbation approximation and the integral equation model (IEM). Comparisons were also made with Lambert scattering and approximative solutions for fractal surfaces. The vegetation measurements were compared with predictions using a cloud model of dielectric discs. The results of the radar measurements showed that all the tested soil and sand surfaces generated incoherent scattering at 94 GHz with a weak dependence on the angle of incidence. An exception was the asphalt surface, however, and detailed comparisons with different scattering models were carried out using the autocorrelation function of the measured surface profile as input. The best agreement between measured and predicted scattering coefficients was obtained using the IEM-model
Keywords
backscatter; electromagnetic wave scattering; geophysical techniques; radar applications; radar cross-sections; radar imaging; radar polarimetry; remote sensing by radar; 94 GHz; EHF mm wave millimetric radar; asphalt road; background surface; backscatter; backscattering coefficients; dielectric disc; field perturbation approximation; geometric optics; geophysical measurement technique; land surface terrain mapping; lawn; ntegral equation model; polarization polarimetry; radar scattering coefficients; remote sensing; scattering model; soil surface; surface roughness; vegetation; Backscatter; Frequency estimation; Laser radar; Optical scattering; Predictive models; Radar scattering; Rough surfaces; Soil measurements; Surface roughness; Testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Geoscience and Remote Sensing Symposium, 1994. IGARSS '94. Surface and Atmospheric Remote Sensing: Technologies, Data Analysis and Interpretation., International
Conference_Location
Pasadena, CA
Print_ISBN
0-7803-1497-2
Type
conf
DOI
10.1109/IGARSS.1994.399521
Filename
399521
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