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An Approach to the Simulation of Radar Sounder Radargrams Based on Geological Analogs

机译:基于地质类似物的雷达测深仪雷达图仿真方法

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Simulation of radar sounder (RS) data is important for understanding the radar response of subsurface features to facilitate the interpretation of the real data. Conventional electromagnetic simulators require the definition of complex geoelectrical models of the investigated targets. They also involve time-complex solutions of Maxwell's equations for computing the received electric field, which leads to very high computation time. Furthermore, the simulated radargrams are often not realistic as it is very difficult to model all the variables involved in the data acquisition. In this paper, we propose a novel simulation approach that exploits the data available from existing RSs in geologically analogous terrains, to produce realistic simulations of the investigated RS target. This simulation strategy is based on minimizing the difference between the analog and the investigated acquisition scenarios. This is done by applying a series of corrections, which depend on the relation between the radargram characteristics and the physical variables describing the acquisition process. The aim is to produce radargrams that resemble the investigated scenario in terms of the echo magnitude, bandwidth, range resolution, and along-track resolution. Experimental results present three case studies for different possibilities of the analog and the investigated scenarios. The validation of the simulated radargrams with actual data demonstrates the effectiveness of the proposed approach. Finally, we also present a real application of this approach for the simulation of Radar for Icy Moon Exploration (RIME) radargrams for a combination of instrument and target parameters, using the SHAllow RADar (SHARAD) radargram acquired over the geological analog of a selected RIME target.
机译:雷达测深仪(RS)数据的模拟对于理解地下特征的雷达响应非常重要,以便于解释真实数据。常规的电磁模拟器需要定义所研究目标的复杂地电模型。它们还涉及用于计算接收电场的麦克斯韦方程组的时间复杂解,这会导致非常长的计算时间。此外,模拟的雷达图通常是不现实的,因为很难对数据采集中涉及的所有变量进行建模。在本文中,我们提出了一种新颖的模拟方法,该方法利用了地质相似地形中现有RS的可用数据,从而对所研究的RS目标进行了真实的模拟。该仿真策略基于最小化模拟和研究的采集方案之间的差异。这是通过应用一系列校正来完成的,这些校正取决于雷达图特性和描述采集过程的物理变量之间的关系。目的是产生在回波幅度,带宽,距离分辨率和沿航迹分辨率方面类似于所研究场景的雷达图。实验结果提供了三个案例研究,用于模拟和研究场景的不同可能性。用实际数据对模拟雷达图进行验证,证明了该方法的有效性。最后,我们还利用在选定RIME的地质类似物上获得的SHAllow雷达(SHARAD)雷达图,结合了仪器和目标参数,针对冰冷月球探测(RIME)雷达图模拟了该方法的实际应用。目标。

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