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A coherent scattering model to determine forest backscattering in the VHF-band

机译:用于确定VHF频带中森林反向散射的相干散射模型

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A coherent scattering model to determine the forest radar backscattering at VHF frequencies (20-90 MHz) has been developed. The motivation for studying this frequency band is the recent development of the CARABAS Synthetic Aperture Radar (SAR). In order to model the scattering from branches and trunks, homogeneous dielectric cylinders placed above a semi-infinite di-electric ground have been analyzed. An analytical approach, where the theoretically exact currents induced in an infinite cylinder are truncated, has been compared to a numerical solution using the finite difference time domain (FDTD) method. If the first-order coherent ray tracing is included in the analytical approach, the results match well with the numerically exact FDTD solution. The results show that, in order to determine the VHF-backscattering from a forest stand, the coherent ground interaction is an important part and has to be considered. In this paper, modeling results are in good agreement with CARABAS measurements.
机译:已经开发出一种相干散射模型来确定森林雷达在VHF频率(20-90 MHz)下的反向散射。研究此频段的动机是CARABAS合成孔径雷达(SAR)的最新发展。为了模拟分支和主干的散射,已经对放置在半无限电介质地面上方的均质介质圆柱进行了分析。一种分析方法已将使用无穷圆柱体感应的理论上精确的电流截断的方法与使用时差有限域(FDTD)方法的数值解决方案进行了比较。如果分析方法中包括一阶相干射线跟踪,则结果与数值精确的FDTD解决方案非常匹配。结果表明,为了确定林分中甚高频的反向散射,相干地面相互作用是重要的组成部分,必须加以考虑。在本文中,建模结果与CARABAS测量结果非常吻合。

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