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Understanding C-band radar backscatter from wheat canopy using a multiple-scattering coherent model

机译:使用多重散射相干模型了解小麦冠层的C波段雷达后向散射

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This paper describes a modeling approach to interpret the C-band synthetic aperture radar (SAR) data from wheat canopies as provided by European Remote Sensing (ERS) satellites, RADARSAT, and the forthcoming Environmental Satellite/Advanced Synthetic Aperture Radar (ENVISAT/ASAR) satellite. At a first step, the results of a first-order modeling were compared to ERS data and scatterometer data over the growing season at two different test sites. The prediction by first-order approach was in disagreement with the data from stem extension stage to soft ripening stage. The first-order approach was found to overestimate the attenuation at vertical (V) polarization, resulting in a predicted backscattering coefficient one order of magnitude lower than that observed by the SAR system. To improve the prediction, a multiple-scattering modeling based on numerical solution of multiple-scattering Foldy-Lax equation was used. The multiple-scattering modeling provides better backscatter estimates at vertical-vertical (VV) polarization for both test sites. Then, the model is used to derive the prevailing interactions mechanisms at horizontal-horizontal (HH) and VV polarizations and 23/spl deg/ and 40/spl deg/ of incidence angle. Finally, the retrieval of crop parameters from C-band SAR data is addressed.
机译:本文介绍了一种建模方法,用于解释由欧洲遥感(ERS)卫星,RADARSAT和即将推出的环境卫星/高级合成孔径雷达(ENVISAT / ASAR)提供的小麦冠层的C波段合成孔径雷达(SAR)数据卫星。第一步,将一阶建模的结果与两个不同测试地点整个生长季节的ERS数据和散射仪数据进行比较。一阶方法的预测与从茎延伸期到软成熟期的数据不一致。发现一阶方法高估了垂直(V)极化时的衰减,从而导致预测的反向散射系数比SAR系统所观察到的低一个数量级。为了改善预测效果,使用了基于多重散射Foldy-Lax方程数值解的多重散射模型。对于两个测试点,多重散射建模都可以在垂直-垂直(VV)极化条件下提供更好的反向散射估计。然后,该模型用于导出在水平-水平(HH)和VV极化以及入射角23 / spl deg /和40 / spl deg /时的主要相互作用机制。最后,解决了从C波段SAR数据中检索作物参数的问题。

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