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Modeling and simulation for ground penetrating radar study of the subsurface structure of the moon

机译:地下透过雷达研究的建模与仿真

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A ground penetrating radar (GPR) is currently within the scope of China's Chang-E 3 lunar mission, with the purpose of studying the subsurface structure of the Moon. In this study, the key factors affecting a lunar GPR performance are discussed firstly. Geometrical optics and ray tracing approaches are used to simulate GPR echoes from the lunar subsurface, with considering the transmission, attenuation, reflection and geometrical spreading of radar waves in lunar subsurface as well as the antenna directivity. Taking Sinus Iridum region as an example, radargrams are simulated on the basis of lunar surface topography and regolith composition. Finally, potential scientific return from GPR echoes is also discussed.
机译:地面穿透雷达(GPR)目前在中国昌-E 3月任务的范围内,目的是研究月球地下结构。在这项研究中,首先讨论影响月球GPR性能的关键因素。几何光学和光线跟踪方法用于模拟农历地下的GPR回波,考虑到月球地下雷达波的传输,衰减,反射和几何扩展以及天线方向性。以窦Iridum区域为例,基于月球表面形貌和极孔组合物模拟雷达格。最后,还讨论了GPR呼应的潜在科学回归。

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