Position determination of a subsurface object by combined output of two receive GPR antennas

N. Milisavjeviae, A. Yarovoy
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引用次数: 1

Abstract

A new algorithm is proposed for subsurface object detection and 3D localization using ground-penetrating radar (GPR) data, if GPR antennas are slightly elevated above the ground. Due to an effective approximation, the algorithm solves problems linked to calculating the position of the refracting point of electromagnetic waves on the air-ground interface. We present how the typical hyperbolic object signature can be detected on a B-scan. Then, we argue that only one surface coordinate can be extracted from the hyperbola detected in one B-scan, so that additional information is needed to find the transverse object position. We show that an antenna configuration with two receive antennas solves this problem. The problem of extracting the third object coordinate as well as the propagation velocity of electromagnetic waves in the ground is also addressed. The algorithm is illustrated on a data set acquired by this antenna configuration.
通过两个接收GPR天线的联合输出确定地下目标的位置
针对探地雷达天线略高于地面的情况,提出了一种利用探地雷达数据进行地下目标探测和三维定位的新算法。由于有效的近似,该算法解决了电磁波在地空界面上折射点位置的计算问题。我们介绍了如何在b扫描上检测到典型的双曲对象签名。然后,我们认为从一次b扫描检测到的双曲线中只能提取一个表面坐标,因此需要额外的信息来确定物体的横向位置。我们展示了带有两个接收天线的天线配置解决了这个问题。本文还讨论了第三目标坐标的提取以及电磁波在地面上的传播速度问题。该算法在该天线结构所获得的数据集上进行了说明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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