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A study of antenna configuration for bistatic ground-penetrating radar

机译:双基地探地雷达天线配置研究

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Recently, a public attention to ground subsidence due to the subsurface cavities in the urban area is growing. To prevent such catastrophe, a ground-penetrating radar (GPR) technique is being widely used to image and detect roadbed cavities. In this paper, properties in timedomain of antenna configurations are investigated to construct a bistatc GPR system. The system is categorized into two types: broadside and endfire, according to the antenna orientation. For each system, GPR signals scattered from spheric subsurface cavity model are compared and analyzed in the time domain. Then, for better energy penetration into the ground, impedance matching medium put below the antenna is studied. Considering the numerical results, the system that can provide a maximum level of signals scattered from the radar target of interest is determined. This study would help to give an insight into how a multi-channel antenna system is built to detect roadbed cavities in the urban area.
机译:近来,由于城市地区的地下空腔而引起的地面沉降引起了公众的关注。为了防止这种灾难,地面穿透雷达(GPR)技术被广泛用于成像和检测路基空腔。在本文中,研究了天线配置的时域特性,以构建双稳态GPR系统。根据天线方向,该系统分为两种:宽边和端射。对于每个系统,在时域中对从球形地下腔体模型散射的GPR信号进行比较和分析。然后,为了使能量更好地渗透到地面,研究了置于天线下方的阻抗匹配介质。考虑到数值结果,确定了可以提供从目标雷达目标散射的最大信号电平的系统。这项研究将有助于深入了解如何构建多通道天线系统来检测市区的路基空洞。

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