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Evaluation of pavement layer thicknesses using GPR: A comparison between full-wave inversion and the straight-ray method

机译:使用GPR评估铺装层厚度:全波反演与直线法的比较

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The characterization of pavement properties is essential to manage transport infrastructures. In this paper, we aim at assessing the abilities of the ground-penetrating radar (GPR) full-wave inversion and straight-ray methods to achieve this task. The first approach consists in combining a full-wave-inversion procedure with a recently developed electromagnetic model. The latter takes advantage of a closed-form solution of Maxwell's equations to describe the antenna-medium system. The second approach resorts to the surface reflection coefficient method. We showed through numerical experiments that the straight-ray method in general provides fast and good results, but full-wave inversion applies to a wider range of model configurations and is subject to less important errors. A laboratory experiment was also conducted to take into account the effects of measurement errors as well as inherent pavement heterogeneities. The results evidence that noisy data and a lack of information can sometimes lead to an inappropriate estimation of the parameters. Nonetheless, applying an adequate processing before inverting the data made both inversion methods able to provide an estimation of the pavement thickness along the acquisition profile. (C) 2018 Elsevier Ltd. All rights reserved.
机译:路面特性的表征对于管理运输基础设施至关重要。在本文中,我们旨在评估探地雷达(GPR)全波反演和直射线方法实现此任务的能力。第一种方法是将全波反演程序与最近开发的电磁模型相结合。后者利用Maxwell方程的闭式解来描述天线-介质系统。第二种方法诉诸于表面反射系数法。通过数值实验,我们证明了直射线法通常可以提供快速而良好的结果,但是全波反演适用于更广泛的模型配置,并且误差较小。还进行了一项实验室实验,以考虑到测量误差以及固有的路面异质性的影响。结果表明,嘈杂的数据和缺乏信息有时会导致对参数的不正确估计。尽管如此,在对数据进行反演之前进行适当的处​​理使得这两种反演方法都能够对沿采集剖面的路面厚度进行估算。 (C)2018 Elsevier Ltd.保留所有权利。

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