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Subsurface object detection and characterization using Ground Penetrating Radar

机译:使用地面穿透雷达的地下对象检测和表征

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Subsurface characterization and information about buried utility infrastructure is an important issue affecting the public safety and progress of development projects. A heterogeneous subsurface environment is often insufficiently characterized by the data collected through various direct and indirect means, particularly in dense urban areas. The present study aims to detect the subsurface objects and map the stratigraphic environment in a city region using a non-invasive geophysical technique called Ground Penetrating Radar (GPR). In this study, antennas of central frequency 200 and 80 MHz have been used to identify the underground utilities and subsurface layer information, respectively. A methodology based on a geometrical approach using Support Vector Machines (SVM) is developed for computing the depth and radius of buried pipes. Also, the electrical discontinuities in the GPR profiles are identified through various processing techniques to extract the subsurface layer information. The results indicate that the 200-MHz antenna and SVM-based methodology estimate the buried pipe parameters with reasonable accuracy at various site combinations. It is found that the bistatic low-frequency 80-MHz antenna suitably characterizes the subsurface layers, which are in close agreement with the borehole data. The processed data illustrate a strong correlation between the radar signals and the characteristics of the strata resolving the uncertainty. The study highlights the capability of GPR in extracting the subsurface data and recommends a multi-frequency approach to map and interpret the complete subsurface environment at a specific site.
机译:埋藏实用基础设施的地下表征和信息是影响公共安全和开发项目进度的重要问题。异构地下环境通常不足以通过各种直接和间接手段收集的数据,特别是在密集的城市地区。本研究旨在检测地下对象,使用称为地层雷达(GPR)的非侵入性地球物理技术来检测城市地区的地层环境。在该研究中,已经使用中央频率200和80MHz的天线分别识别地下实用程序和地下层信息。基于使用支持向量机(SVM)的基于几何方法的方法,用于计算埋地管的深度和半径。而且,通过各种处理技术识别GPR简档中的电不连续性以提取地下层信息。结果表明,200-MHz天线和基于SVM的方法在各种场地组合的合理精度下估计了埋地管参数。发现双面低频80-MHz天线适当地表征了地下层,其与钻孔数据密切一致。处理后的数据说明了雷达信号与分辨不确定性的地层的特性之间的强相关性。该研究突出了GPR在提取地下数据中的能力,并推荐多频方法来映射和解释特定站点的完整地下环境。

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