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Analysis of TerraSAR-X data and their sensitivity to soil surface parameters over bare agricultural fields

机译:裸露农田上TerraSAR-X数据及其对土壤表面参数的敏感性分析

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The sensitivity of TerraSAR-X radar signals to surface soil parameters has been examined over agricultural fields, using HH polarization and various incidence angles (26 degrees, 28 degrees, 50 degrees, 52 degrees). The results show that the radar signal is slightly more sensitive to surface roughness at high incidence (50 degrees-52 degrees) than at low incidence (26 degrees-28 degrees). The difference observed in the X-band, between radar signals reflected by the roughest and smoothest areas, reaches a maximum of the order of 5.5 dB at 50 degrees-52 degrees, and 4 dB at 26 degrees-28 degrees. This sensitivity increases in the L-band with PALSAR/ALOS data, for which the dynamics of the return radar signal as a function of soil roughness reach 8 dB at HH38 degrees. In the C-band, ASAR/ENVISAT data (HH and VV polarizations at an incidence angle of 23 degrees) are characterised by a difference of about 4 dB between the signals backscattered by smooth and rough areas. Our results also show that the sensitivity of TerraSAR-X signal to surface roughness decreases in very wet and frozen soil conditions. Moreover, the difference in backscattered signal between smooth and rough fields is greater at high incidence angles. The low-to-high incidence signal ratio (Delta sigma degrees=sigma(26 degrees-28 degrees)/sigma(50 degrees-52 degrees)) decreases with surface roughness, and has a dynamic range, as a function of surface roughness, smaller than that of the backscattering coefficients at low and high incidences alone. Under very wet soil conditions (for soil moistures between 32% and 41%), the radar signal decreases by about 4 dB. This decrease appears to be independent of incidence angle, and the ratio Delta sigma degrees is found to be independent of soil moisture. (C) 2008 Elsevier Inc. All rights reserved.
机译:已经使用HH极化和各种入射角(26度,28度,50度,52度)在农田上检查了TerraSAR-X雷达信号对地表土壤参数的敏感性。结果表明,雷达信号在高入射角(50度至52度)下对表面粗糙度的敏感性比在低入射角(26度至28度)下略微敏感。在最粗糙和最光滑区域反射的雷达信号之间,在X波段观察到的差异在50度至52度时达到5.5 dB的最大值,在26度至28度时达到4 dB的最大值。在PALSAR / ALOS数据的作用下,L波段的灵敏度提高,在HH38度下,返回雷达信号的动力学随土壤粗糙度的变化达到8 dB。在C波段中,ASAR / ENVISAT数据(入射角为23度的HH和VV极化)的特征是,在被平滑区域和粗糙区域反向散射的信号之间存在大约4 dB的差异。我们的结果还表明,在非常潮湿和冰冻的土壤条件下,TerraSAR-X信号对表面粗糙度的敏感性降低。此外,在高入射角下,平滑场和粗糙场之间的反向散射信号差更大。低到高入射信号比(Delta sigma度= sigma(26度至28度)/ sigma(50度至52度))随表面粗糙度的增加而降低,并具有动态范围,该函数范围是表面粗糙度的函数,仅在低入射和高入射时比后向散射系数小。在非常潮湿的土壤条件下(对于土壤水分介于32%和41%之间的情况),雷达信号会降低约4 dB。这种下降似乎与入射角无关,并且发现Delta sigma度比与土壤湿度无关。 (C)2008 Elsevier Inc.保留所有权利。

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