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Time-Gating-Based Time Reversal Imaging for Impulse Borehole Radar in Layered Media

机译:分层介质中脉冲钻孔雷达的基于时间门控的时间反转成像

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摘要

In this paper, the formulation of reverse time migration (RTM) is improved for impulse borehole radar imaging in the subsurface scenarios with layered media. By fully adopting the prior information of surrounding media, the time gating function is designed and applied to the incident wave field and scattering wave field for each imaging point, which strengthens the correlation between the wave fields in the time domain. The clutters partly caused by the multiple reflections between different media layers are suppressed due to the gating function. A normalized zero-offset cross correlation with gated samples is conducted and used to weight the result of RTM. The improved approach is compared with the conventional RTM, the back-projection method, and the Stolt migration algorithm with synthetic data and is then validated by a single-borehole radar experiment in a layered media scenario. The results demonstrate that the developed approach is superior to the conventional methods in locating targets and robust in complex subsurface environments.
机译:在本文中,改进了反向时间偏移(RTM)的公式,以用于具有分层介质的地下情况下的脉冲钻孔雷达成像。通过充分利用周围介质的先验信息,设计了时间门控功能并将其应用于每个成像点的入射波场和散射波场,从而增强了时域中波场之间的相关性。由于门控功能,部分抑制了不同介质层之间多次反射所引起的混乱。进行与门控样本的归一化零偏移互相关,并将其用于加权RTM的结果。将该改进的方法与常规RTM,反投影方法以及具有合成数据的Stolt迁移算法进行了比较,然后通过分层介质场景中的单孔雷达实验对其进行了验证。结果表明,所开发的方法在定位目标方面具有优于常规方法的优势,并且在复杂的地下环境中具有较强的鲁棒性。

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