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Unified full wave solutions to interpret Apollo lunar surface data

机译:统一的全波解决方案来解释阿波罗月球表面数据

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Bistatic radar experiments carried out by Tyler and Howard during the Apollo 14, 15, and 16 missions provide a very useful dataset with which to compare theoretical models and experimental data. Vesecky et al. (1988) report that their model for near grazing angles compares favorably to experimental data. However, for angles of incidence around 80/spl deg/, all the analytical models considered by Vesecky et al. predict values for the quasi-specular cross sections that are about half the corresponding values taken from the Apollo 16 data. In this work, questions raised by this discrepancy between the reported analytical and experimental results are addressed. The unified full wave solutions are shown to be in good agreement with the bistatic radar data taken during Apollo 14 and 16 missions. Using the full wave approach, the quasi-specular contributions to the scattered field from the large scale surface roughness as well as the diffuse Bragg-like scattering from the small scale surface roughness are accounted for in a unified self-consistent manner. Since the full wave computer codes for the scattering cross sections contain ground truth data only, it is shown how it can be readily used to predict the rough surface parameters, based on the measured data.
机译:泰勒和霍华德在阿波罗14号,15号和16号任务中进行的双基地雷达实验提供了非常有用的数据集,可用来比较理论模型和实验数据。 Vesecky等。 (1988)报告说,他们的近掠角模型优于实验数据。但是,对于约80 / spl deg /的入射角,Vesecky等人考虑的所有分析模型都没有考虑。预测准镜面横截面的值大约是从Apollo 16数据获取的相应值的一半。在这项工作中,解决了所报告的分析结果与实验结果之间存在差异的问题。事实证明,统一的全波解决方案与在阿波罗14号和16号任务中获取的双基地雷达数据非常吻合。使用全波方法,以统一的自洽方式说明了大尺度表面粗糙度对散射场的准镜面贡献以及小尺度表面粗糙度对散射状的布拉格样散射。由于用于散射横截面的全波计算机代码仅包含地面真实数据,因此将显示如何根据测量数据轻松地将其用于预测粗糙表面参数。

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