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Numerical Parametric Study of Buried Target Ground-Penetrating Radar Signature

机译:掩埋目标探地雷达签名的数值参数研究

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The assessment of the performances of ground-penetrating radar (GPR) in humanitarian demining is an important problem. These performances are related to the relative strength of the target radar response with respect to that of the soil. Many parameters influence both responses. The physical and geometrical parameters that influence the target signature include the soil electromagnetic (EM) constitutive parameters, the target depth and orientation with respect to the soil surface, the antenna height and the target EM and geometrical properties. This work presents a numerical parametric study of the soil and target radar signatures. The advantages of the numerical approach are: it allows for a separate study of the influence of each parameters on the radar responses, it is fast, cheap, generic with regards to hardware, and finally it is not prone to experimental errors and hardware failures or misuse. Moreover it is always possible to link the numerical experiments with a particular hardware by characterizing this latter. However, a number of simplifications, such as modeling the soil as a planar multilayered medium, are introduced to keep the problem tractable. This study yields surprising results, such as for example the possibility of considering the target in homogeneous space for computing its signature, as soon as it is a few centimeters deep. The target considered in the numerical experiments is a dielectric cylinder representing an AP mine, with diameter 6 cm and height 5 cm, and ε_(rt) = 3. These values are chosen to approach as much as possible the physical properties of the M35BG AP mine, which is small and therefore difficult to detect.
机译:对探地雷达在人道主义排雷中的性能进行评估是一个重要的问题。这些性能与目标雷达响应相对于土壤的相对强度有关。许多参数都会影响这两种响应。影响目标特征的物理和几何参数包括土壤电磁(EM)本构参数,相对于土壤表面的目标深度和方向,天线高度以及目标EM和几何特性。这项工作提出了对土壤和目标雷达信号的数值参数研究。数值方法的优点是:它允许单独研究每个参数对雷达响应的影响,它是快速,廉价,通用的硬件,最后不容易出现实验错误和硬件故障或滥用。此外,通过表征数字硬件,总是可以将数字实验与特定的硬件联系起来。但是,为了简化问题,引入了许多简化方法,例如将土壤建模为平面多层介质。这项研究得出了令人惊讶的结果,例如,只要目标物深了几厘米,就可以考虑在均匀空间中计算目标物的特征。数值实验中考虑的目标是代表AP地雷的电介质圆柱体,直径为6 cm,高度为5 cm,ε_(rt)=3。选择这些值以尽可能地接近M35BG AP的物理特性地雷,它很小,因此很难发现。

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