Topographic correction of GPR profile based on odometer and inclinometer data

V. Prokhorenko, V. Ivashchuk, S. Korsun, S. Musiyachenko, V. Borodavka
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引用次数: 10

Abstract

Usually, data obtained by ground penetrating radar (GPR) are displayed as a rectangular 2D picture (profile), vertical and horizontal axes of which are proportional to depth and traveled distance, respectively. Surface, generally, is not horizontal, that leads to distorted view of irregularities in the GPR profile. To eliminate these distortions a topographic correction is used. Topographic data can be obtained by laser leveler, total station, GPS and similar equipment. Further this information is used for topographic correction of the GPR data. This paper provides method of topographic correction based on information about traveled distance and tilt of antenna unit at each point of measurement. These data are measured by odometer and inclinometer, respectively. The information is obtained simultaneously with the GPR data and is connected with each trace of the profile. Algorithm of traces vertical offset calculation relatively the first trace of profile and accuracy of topographic correction are discussed. The results of topographic correction of profile acquired by VIY3-300 GPR are presented. This inexpensive solution improves performance characteristics of GPR and reduces time required for GPR profiles processing and their interpretation.
基于里程计和倾角计数据的探地雷达剖面地形校正
通常,探地雷达(GPR)获得的数据显示为矩形二维图像(剖面),其纵轴和横轴分别与深度和行进距离成正比。表面通常不是水平的,这导致GPR剖面中不规则性的扭曲视图。为了消除这些畸变,使用地形校正。地形数据可通过激光水准仪、全站仪、GPS等设备获取。此外,这些信息还用于探地雷达数据的地形校正。本文提出了一种基于天线单元在每个测量点的移动距离和倾斜信息的地形校正方法。这些数据分别由里程表和倾角计测量。该信息与GPR数据同时获得,并与剖面的每条轨迹相连接。讨论了轨迹垂直偏移量相对计算算法、轮廓首迹和地形校正精度。给出了用VIY3-300探地雷达对剖面进行地形校正的结果。这种廉价的解决方案提高了探地雷达的性能特征,减少了探地雷达剖面处理和解释所需的时间。
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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