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Theoretical and experimental investigations on the performance of Ground Penetrating Radars in challenging operational conditions

机译:在具有挑战性的运行条件下探地雷达性能的理论和实验研究

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In various important applications, Ground Penetrating Radar (GPR) instruments are demanded to operate in particularly challenging conditions, e.g., for the detection of variously-sized and shaped buried rocks in the shallow planetary subsurface, with close Tx/Rx antennas placed at the soil interface (as in the planned ESA “ExoMars” mission, having a GPR onboard an on-site rover). In such cases, the GPR should be able to locate properly scatterers at depths where the usual far-field operation could no longer be fulfilled and the relevant performance depends in a much more involved fashion on various physical parameters. This kind of problem is analyzed here by applying different compared approaches. A specific laboratory setup has been realized, with different commercial GPR systems working on an artificial dielectric box with buried scatterers. Based on proper processing of the measured radargrams, the depth of shallow subsurface rocky blocks in a sandy soil has been estimated in connection with the different GPR features. The validity of the results has been checked with suitable reference data, considering the theoretical frame to take into account various critical setup parameters (host medium features, geometrical and physical characteristics of the inclusions, GPR operating wavelengths, antenna separation, etc.). Further useful information has been derived by suitably implementing a full-wave numerical approach, able to accurately study the features of the waves detected by the GPRs with flexible parameterization. Helpful and reliable criteria can be achieved for proper design of such type of instruments in future planetary missions.
机译:在各种重要应用中,要求探地雷达(GPR)仪器在特别具有挑战性的条件下运行,例如,用于探测浅层行星地下不同尺寸和形状的埋入岩石,并在土壤上放置紧密的Tx / Rx天线界面(如计划中的ESA“ ExoMars”任务,在现场漫游车上配备GPR)。在这种情况下,GPR应该能够将散射体适当地定位在无法再完成常规远场操作的深度,并且相关性能在很大程度上取决于各种物理参数。在此通过应用不同的比较方法来分析这种问题。已经实现了特定的实验室设置,在带有掩埋散射体的人工介电盒上使用了不同的商业GPR系统。在对测得的雷达图进行适当处理的基础上,结合不同的GPR特征,估算了沙质土壤中浅层地下岩石块的深度。已使用适当的参考数据检查了结果的有效性,同时考虑了各种关键设置参数(主体介质特征,夹杂物的几何和物理特征,GPR工作波长,天线间隔等)的理论框架。通过适当地实施全波数值方法已经获得了更多有用的信息,该方法能够通过灵活的参数设置精确地研究GPR检测到的波的特征。对于将来的行星飞行任务中此类仪器的正确设计,可以达到有用且可靠的标准。

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