DocumentCode
1559881
Title
Simulating coherent backscattering from crops during the growing cycle
Author
Marliani, Filippo ; Paloscia, Simonetta ; Pampaloni, Paolo ; Kong, J.A.
Author_Institution
ESTEC, ESA, Noordwijk, Netherlands
Volume
40
Issue
1
fYear
2002
fDate
1/1/2002 12:00:00 AM
Firstpage
162
Lastpage
177
Abstract
The backscattering coefficient and the position of interferometric phase center of wheat and sunflowers during the growing cycle have been computed by using a coherent electromagnetic model. In the model, the scattered fields are added coherently and the attenuation in the canopy is computed by means of Foldy\´s approximation. The comparison between model simulations and experimental data has shown that model results match reasonably well with the measured backscattering. As the plant grows, the backscattering of wheat ("narrow leaf" crop) decreases, whereas that of sunflowers ("broad leaf") increases. An analysis of the various terms that contribute to backscattering has indicated that the most significant contribution is given by the double scattering soil-stalk and that the position of the interferometric phase center is close to the soil. When the contribution of leaves is more significant, as in the case of sunflowers, the interferometric phase center goes up to about one quarter of the full plant height. This result demonstrates the potential of the interferometric observation in providing significant new information on crop classification algorithms based on scattering mechanisms
Keywords
agriculture; backscatter; geophysical techniques; radar cross-sections; radar theory; remote sensing by radar; vegetation mapping; Foldy approximation; Foldy´s approximation; Triticum; agriculture; backscatter; backscattering; backscattering coefficient; broad; broad learl; canopy; coherent backscattering; coherent electromagnetic model; crops; geophysical measurement technique; growing cycle; interferometric phase center; leaves; model; narrow leaf crop; radar remote sensing; radar scattering; simulation; sunflower; sunflowers; vegetation mapping; wheat; Backscatter; Crops; Electromagnetic scattering; Interferometry; Land surface; Radar scattering; Sea surface; Soil; Surface topography; Vegetation mapping;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/36.981358
Filename
981358
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