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A novel method for FDTD numerical GPR imaging of arbitrary shapes based on Fourier transform

机译:基于傅里叶变换的任意形状的FDTD数值GPR成像的新方法

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摘要

Ground penetrating radar (GPR) systems are very powerful tools with a wide range of advantages in non-destructive testing. Target detection is one of the serious results of GPR application. The landmine detection in the soil and reinforcement bars and holes in the concrete is some of the GPR object detection examples. In this research, the targets are modeled in different cases, an air hole or a conductive material. A cracked surface is also modeled for both conductive and dielectric media. For modeling, the three-dimensional (3D) finite difference time-domain (FDTD) method is applied. Perfectly matched layer (PML) absorbing boundary condition is used for simulating the physical absorbers and free space. The results were shown in time domain. The difference between results helps to distinguish the target depth and electrical properties. For better specification of the target shape, a transform in frequency domain is used. This transform contains a Fourier transform in a selected frequency. The results show a sudden change in the frequency response over the hole or target scanning. By this idea, the shape of any arbitrary hole or crack can be extracted.
机译:探地雷达(GPR)系统是非常强大的工具,在无损检测中具有广泛的优势。目标检测是GPR应用的重要成果之一。 GPR对象检测示例包括土壤中的地雷检测以及混凝土中的钢筋和孔检测。在这项研究中,在不同情况下(空气孔或导电材料)对目标进行建模。还为导电和介电介质建模了破裂的表面。对于建模,应用了三维(3D)时域有限差分(FDTD)方法。完全匹配层(PML)吸收边界条件用于模拟物理吸收器和自由空间。结果以时域显示。结果之间的差异有助于区分目标深度和电特性。为了更好地指定目标形状,使用了频域变换。该变换包含选定频率的傅立叶变换。结果显示,整个孔或目标扫描的频率响应突然变化。通过这种想法,可以提取任意孔或裂缝的形状。

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