论文标题

使用宽带双偏置地面雷达的圆柱金属棒的直径估计

Diameter Estimation of Cylindrical Metal Bar Using Wideband Dual-Polarized Ground-Penetrating Radar

论文作者

Sun, Hai-Han, Cheng, Weixia, Fan, Zheng

论文摘要

地面穿透雷达(GPR)是在土木工程结构中定位金属棒的有效技术。但是,由于GPR分辨率有限,因此小直径的地下金属条的准确尺寸仍然是一个具有挑战性的问题。为了解决该问题,我们通过探索宽带双极化GPR获得的条形直径和条形反射信号的最大功率之间的关系,提出了一种基于反射功率的方法,该信号反映了基于模式的方法的分辨率限制。在提出的方法中,通过垂直线和平行极化天线获得的条形直径与反射信号的电源比之间的理论关系是通过金属条的固有散射宽度和棒反射信号的宽带光谱建立的。基于理论关系,可以使用GPR调查中获得的功率比估算条形直径。已经使用不同的GPR频谱,地下介质以及各种直径和深度的金属条进行了模拟和实验,以证明该方法的功效。实验结果表明,该方法在不同情况下的误差少于10%,可实现高尺寸的精度。凭借其简单的操作和高精度,该方法可以实时对地下金属棒进行实时实现。

Ground-penetrating radar (GPR) has been an effective technology for locating metal bars in civil engineering structures. However, the accurate sizing of subsurface metal bars of small diameters remains a challenging problem for the existing reflection pattern-based method due to the limited resolution of GPR. To address the issue, we propose a reflection power-based method by exploring the relationship between the bar diameter and the maximum power of the bar reflected signal obtained by a wideband dual-polarized GPR, which circumvents the resolution limit of the existing pattern-based method. In the proposed method, the theoretical relationship between the bar diameter and the power ratio of the bar reflected signals acquired by perpendicular and parallel polarized antennas is established via the inherent scattering width of the metal bar and the wideband spectrum of the bar reflected signal. Based on the theoretical relationship, the bar diameter can be estimated using the obtained power ratio in a GPR survey. Simulations and experiments have been conducted with different GPR frequency spectra, subsurface mediums, and metal bars of various diameters and depths to demonstrate the efficacy of the method. Experimental results show that the method achieves high sizing accuracy with errors of less than 10% in different scenarios. With its simple operation and high accuracy, the method can be implemented in real-time in situ examination of subsurface metal bars.

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