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Scattering from bare soils: C-band multipolarization scatterometer measurements

机译:从裸土散射:C波段多极化散射计测量

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Multi-angle, multi-polarization C-band backscattering measurements were performed over selected bare soil areas. To perform these measurements, an FM-CW radar has been designed and assembled. This device has the capability of resolving independent samples within the antenna footprint area, thus allowing range discrimination and improving the signal statistics. Two areas with different degrees of roughness and dielectric constants were selected and set up. Co-polarized backscattering coefficients were measured for incidence angles between 23 degrees and 60 degrees. To perform a model analysis of the backscattering properties, 'ground truth' data, including surface roughness profiles and soil moisture values (directly related to dielectric constant) were also collected. The 'classical' parameters, used to describe surface roughness, showed a wide spreading. This evidence and the data resulting from ground truth campaigns over many European test sites suggested an alternative description of surface roughness, based on the self-similarity (fractal) properties. The surfaces have therefore been described as fBm (Fractional Brownian Motion) processes, and their backscattering response has been theoretically modeled by a numerical simulation (in 3-D in order to also take into account anisotropy effects) in Kirchhoff approximation. The experimental data have been analyzed with both asymptotic models (IEM) considering a classical statistical description, and with the numerical simulation applied to fBm surfaces.
机译:多角度,多极化C波段反向散射测量在选定的裸土壤区域进行。为了执行这些测量,设计和组装了FM-CW雷达。该设备具有解析天线占地面积内的独立样本的能力,从而允许范围辨别和改善信号统计。选择并设置具有不同程度的粗糙度和介电常数的两个区域。测量23度和60度之间的入射角的共偏振后散射系数。为了执行反向散射性质的模型分析,还收集了“地面真理”数据,包括表面粗糙度曲线和土壤湿度值(与介电常数直接相关)。用于描述表面粗糙度的“经典”参数显示出广泛的展开。根据许多欧洲测试网站的地面真理运动导致的证据和数据建议了表面粗糙度的替代描述,基于自相似性(分形)属性。因此,表面被描述为FBM(分数褐色运动)过程,并且它们的反向散射响应已经由数值模拟(在3-D中以考虑到视网膜内效应)进行了理论上建模的。考虑到经典统计描述,并利用应用于FBM表面的数值模拟,已经用渐近模型(IEM)分析了实验数据。

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