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Synthetic Aperture Radar Processing of Kaguya Lunar Radar Sounder Data for Lunar Subsurface Imaging

机译:Kaguya月球雷达测深仪数据的合成孔径雷达处理,用于月球地下成像

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Synthetic aperture radar (SAR) processing was applied to the observation data of Lunar Radar Sounder (LRS), which is an HF sounder which was installed onboard a Japanese lunar exploration orbiter, Kaguya, for the purpose of imaging lunar subsurface structure. A two-media model was introduced to the LRS SAR algorithm to define the reference function of the LRS SAR processing. The LRS SAR algorithm has two free parameters, i.e., dielectric constant of the subsurface medium and synthetic aperture. The effect of these free parameters on LRS SAR imaging was studied by simulation and was verified by actual LRS observation data. A practical guideline for LRS SAR processing was drawn. The dielectric constant of the subsurface medium may be ignored in practice so far as the synthetic aperture is smaller than 10 km. For a larger synthetic aperture case, assumption of a moderate dielectric constant $(varepsilon = 6 sim 8)$ of the subsurface medium is effective in realizing good focusing of deep targets. Finally, taking full advantage of ground processing, advanced processing was attempted. Off-nadir focusing SAR processing proved to be effective in imaging oblique objects whose dominant scattering angle was not the angle toward zenith. Changing the dielectric constant of the two-media model proved to be effective in focusing/defocusing small objects, thus enabling us to localize the object's position as surface or subsurface.
机译:合成孔径雷达(SAR)处理应用于月球雷达测深仪(LRS)的观测数据,该探测器是安装在日本探月轨道飞行器Kaguya上的HF测深仪,用于成像月球地下结构。在LRS SAR算法中引入了两种媒体模型,以定义LRS SAR处理的参考函数。 LRS SAR算法具有两个自由参数,即地下介质的介电常数和合成孔径。通过仿真研究了这些自由参数对LRS SAR成像的影响,并通过实际LRS观测数据进行了验证。绘制了有关LRS SAR处理的实用指南。实际上,只要合成孔径小于10 km,就可以忽略地下介质的介电常数。对于较大的合成孔径情况,假设地下介质的介电常数$(varepsilon = 6 sim 8)$为中等,可以有效实现对深目标的良好聚焦。最后,充分利用地面处理的优势,尝试了高级处理。天底聚焦SAR处理被证明在对主要散射角不是与天顶角成角度的倾斜物体成像中是有效的。事实证明,改变两种介质模型的介电常数可以有效地聚焦/散焦小物体,从而使我们能够将物体的位置定位为表面或亚表面。

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