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Potential of ASAR/ENVISAT for the characterization of soil surface parameters over bare agricultural fields
Authors:N Holah  N Baghdadi  A Bruand
Affiliation:a Bureau de Recherches Géologiques et Minières (BRGM) Service Aménagement et Risques Naturels 3 Avenue C. Guillemin, B.P. 6009, 45060 Orléans cedex 2, France
b CETP/CNRS, 10/12, avenue de l'Europe, 78140 Velizy, France
c Institut des Sciences de la Terre d'Orléans (ISTO) Université d'Orléans, Géosciences B.P. 6759 45067 Orléans cedex 2, France
Abstract:The objective of this investigation is to analyze the sensitivity of ASAR (Advanced Synthetic Aperture Radar) data to soil surface parameters (surface roughness and soil moisture) over bare fields, at various polarizations (HH, HV, and VV) and incidence angles (20°-43°). The relationships between backscattering coefficients and soil parameters were examined by means of 16 ASAR images and several field campaigns. We have found that HH and HV polarizations are more sensitive than VV polarization to surface roughness. The results also show that the radar signal is more sensitive to surface roughness at high incidence angle (43°). However, the dynamics of the radar signal as a function of soil roughness are weak for root mean square (rms) surface heights between 0.5 cm and 3.56 cm (only 3 dB for HH polarization and 43° incidence angle). The estimation of soil moisture is optimal at low and medium incidence angles (20°-37°). The backscattering coefficient is more sensitive to volumetric soil moisture in HH polarization than in HV polarization. In fact, the results show that the depolarization ratio σHH0HV0 is weakly dependent on the roughness condition, whatever the radar incidence. On the other hand, we observe a linear relationship between the ratio σHH0HV0 and the soil moisture. The backscattering coefficient ratio between a low and a high incidence angle decreases with the rms surface height, and minimizes the effect of the soil moisture.
Keywords:Soil moisture  Soil surface roughness  ASAR images
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