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首页> 外文期刊>Journal of the Korean Institute of Electromagnetic Engineering and Science >An Improved Radiative Transfer Model for Polarimetric Backscattering from Agricultural Fields at C- and X-Bands
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An Improved Radiative Transfer Model for Polarimetric Backscattering from Agricultural Fields at C- and X-Bands

机译:C-和X波段农业田极化反向散射的改进辐射转移模型

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The first-order vector radiative transfer model (FVRTM) is modified mainly by examining the effects of leaf curvature of vegetation canopies, the higher-order multiple scattering among vegetation scattering particles, and the underlying-surface roughness for forward reflection on radar backscattering from farming fields at C- and X-bands. At first, we collected the backscattering coefficients measured by scatterometers and space-borne synthetic aperture radar (SAR), field-measured ground-truth data sets, and theoretical scattering models for radar backscattering from vegetation fields at microwaves. Then, these effects on the RTM were examined using the database at the C- and X-bands. Finally, an improved RTM was obtained by adjusting its parameters, mainly related with the leaf curvature, the higherorder multiple scattering, and the underlying-surface small-roughness characteristics, and its accuracy was verified by comparisons between the improved RTM and measurement data sets.
机译:一阶载体辐射转移模型(FVRTM)主要通过检查植被Canopies的叶曲率的影响,植被散射颗粒中的高阶多散射,以及用于从农业的雷达反射反射的底层表面粗糙度 C-和X波段的字段。 首先,我们收集了散射仪和空间合成孔径雷达(SAR),现场测量的地面真实数据集和从微波植被领域的雷达反向散射的理论散射模型测量的反向散射系数。 然后,使用C-和X波段的数据库检查对RTM的这些效果。 最后,通过调节其参数来获得改进的RTM,主要与叶曲率相关,高阶多散射和底层表面小粗糙度特性,并且通过改进的RTM和测量数据集之间的比较验证了其精度。

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