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Simulation, modeling, and application of ground-penetrating radar in pavement dielectric constant and thickness measurement

机译:地面介电常数和厚度测量地面穿透雷达的仿真,建模和应用

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Ground penetrating radar (GPR) is a non-destructive and continuous electromagnetic (EM) detection technique for civil and environmental parameter measurement applications such as pavement condition and soil property characterization. This technique is based on the measurement of the travel time and reflection amplitude of a short EM pulse, which are functions of medium properties. Most GPR measurements of sub-layer thickness are conducted based on the priori knowledge of dielectric constants of the pavement materials. And actually, the dielectric constant is an unknown but important parameter in the applications. For some applications, the dielectric constants are estimated based on manuals or tables that can only provide rough results not the real changes of pavement materials. In some other cases, the dielectric constants are estimated by using the surface reflectivity information. However, such method is not applicable for rough surface and ground-coupled GPR applications. Compared to the air-launching GPR mode, the ground-coupled mode is more complicated because of the coupling effect between the antennas and ground. In this paper, numerical simulations about the wave propagation paths of the ground-coupled GPR are conducted. The simulation results reveal some interesting ray paths of GPRs in the ground-coupled mode. And based on the simulation results, new methods are introduced for calculating the pavement dielectric constant and thickness directly from the ground-coupled GPR data. Finally, applications and field test results for pavement evaluation are presented.
机译:地面穿透雷达(GPR)是一种非破坏性和连续电磁(EM)检测技术,用于公用和环境参数测量应用,如路面状况和土壤属性表征。该技术基于短EM脉冲的行进时间和反射幅度的测量,这是介质性质的功能。基于路面材料的介电常数的先验知识来进行大多数GPR测量子层厚度。实际上,介电常数是应用中的未知而重要的参数。对于某些应用,介质常数是基于手册或表格的估计,该表格或表格只能提供粗糙的结果而不是路面材料的真正变化。在一些其他情况下,通过使用表面反射率信息估计介电常数。然而,这种方法不适用于粗糙表面和地面耦合的GPR应用。与空气发射GPR模式相比,地面耦合模式更加复杂,因为天线与地之间的耦合效果。在本文中,对地面耦合GPR的波传播路径进行了数值模拟。仿真结果揭示了地面耦合模式中GPRS的一些有趣的光线路径。基于仿真结果,引入了新方法,用于直接从地面耦合的GPR数据计算路面介电常数和厚度。最后,提出了对路面评估的应用和现场测试结果。

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