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Investigation of the Detection of Shallow Tunnels Using Electromagnetic and Seismic Waves

机译:电磁波和地震波探测浅埋隧道的研究

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摘要

Multimodal detection of subsurface targets such as tunnels, pipes, reinforcement bars, and structures has been investigated using both ground-penetrating radar (GPR) and seismic sensors with signal processing techniques to enhance localization capabilities. Both systems have been tested in bi-static configurations but the GPR has been expanded to a multi-static configuration for improved performance. The use of two compatible sensors that sense different phenomena (GPR detects changes in electrical properties while the seismic system measures mechanical properties) increases the overall system's effectiveness in a wider range of soils and conditions. Two experimental scenarios have been investigated in a laboratory model with nearly homogeneous sand. Images formed from the raw data have been enhanced using beamforming inversion techniques and Hough Transform techniques to specifically address the detection of linear targets. The processed data clearly indicate the locations of the buried targets of various sizes at a range of depths.
机译:已经研究了地下穿透目标(如隧道,管道,钢筋和结构)的多模式检测,同时使用探地雷达(GPR)和地震传感器以及信号处理技术来增强定位能力。两种系统均已在双静态配置下进行了测试,但GPR已扩展为多静态配置,以提高性能。使用两个兼容的传感器来感应不同的现象(GPR检测电特性的变化,而地震系统测量机械特性的特性)则可以在更广泛的土壤和条件下提高整个系统的有效性。在实验室模型中使用近乎均匀的沙子研究了两个实验方案。由原始数据形成的图像已使用波束成形反演技术和霍夫变换技术进行了增强,以专门解决线性目标的检测问题。处理后的数据清楚地表明了在一定深度范围内各种大小的掩埋目标的位置。

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