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Surface echo reduction by clutter simulation, application to the Marsis data

机译:通过杂波模拟减少表面回波,应用于Marsis数据

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Low frequency spaceborne radar is a promising opportunity to investigate Earth subsurface in arid and polar areas and for planetary exploration. The radar signal penetrates subsurface and the return signal is the sum of the surface clutter and the subsurface signal that is the signal of interest. In this paper, we describe the simulation of the surface clutter. This signal consists of two parts: electromagnetic waves scattered and one coherently reflected by the surface. Both components are jointly simulated using facet method and an elevation model. So, the method is applied to the Marsis radar experiment. The surface description (elevation model) is based on the Mola data while the simulation parameters are optimized using the instrument characteristics. The comparison of the real data with the simulated clutter allows discrimination of subsurface echoes. This comparison demonstrates the method efficiency and is the base for Marsis data interpretation. Some general conclusions concerning the simulations for other radars will be drawn.
机译:低频星载雷达是研究干旱和极地地区地下和进行行星探测的有前途的机会。雷达信号穿透地下,返回信号是地面杂波与作为感兴趣信号的地下信号之和。在本文中,我们描述了表面杂波的模拟。该信号由两部分组成:电磁波被散射,一个电磁波被表面相干反射。使用构面方法和高程模型共同模拟这两个组件。因此,该方法被应用到了Marsis雷达实验中。表面描述(高程模型)基于Mola数据,同时使用仪器特性优化模拟参数。真实数据与模拟杂波的比较可以区分地下回波。此比较证明了方法的效率,是Marsis数据解释的基础。将得出有关其他雷达模拟的一些一般性结论。

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