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A Cable-Mapping Algorithm Based on Ground-Penetrating Radar

机译:基于探地雷达的电缆映射算法

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摘要

The demand for mapping the buried cables is increasing dramatically with the rapid expansion of urban area, but there are few specific procedures and approaches to map underground cables without disturbing the normal electricity supply. In this letter, a cable-mapping approach based on the ground-penetrating radar (GPR) is proposed, which consists of two parts. First, the parallel scan lines are established along which the GPR is moved to obtain the B-scan images; the hyperbolic shapes on these obtained images are identified and fitted; and the locations and depths of the detected sample points of the buried cables could be derived from these hyperbolas. Then, due to different terrain and surrounding obstacles, as well as the use of pipe-jacking technology,1 the underground cables may not be straight. The detected points are interpolated by a three-dimensional spline interpolation algorithm to obtain a smooth 3-D curve with location and depth information. Compared with the 2-D model, the 3-D curve could visualize the direction of buried cables more intuitively. Also, in comparison with other interpolation algorithms, the error caused by the proposed interpolation is minimized on the chosen data sets. Experiments on real-world data sets are conducted, and the obtained results demonstrate the effectiveness of the proposed model.
机译:随着城市面积的迅速扩大,对地下电缆进行测绘的需求急剧增加,但是在不干扰正常电力供应的情况下,很少有具体的程序和方法可以对地下电缆进行测绘。在这封信中,提出了一种基于探地雷达(GPR)的电缆映射方法,该方法由两部分组成。首先,建立平行扫描线,沿着该平行扫描线移动GPR以获得B扫描图像;然后,识别并拟合这些获得的图像上的双曲线形状;从这些双曲线可以得出埋入电缆的检测样本点的位置和深度。然后,由于地形和周围障碍物的不同以及使用顶管技术的影响,1地下电缆可能不是直的。通过三维样条插值算法对检测到的点进行插值,以获得具有位置和深度信息的平滑3-D曲线。与2-D模型相比,3-D曲线可以更直观地可视化地下电缆的方向。此外,与其他插值算法相比,在选定的数据集上,由建议的插值引起的误差也最小。对真实数据集进行了实验,所得结果证明了该模型的有效性。

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