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Three-dimensional reverse-time migration applied to a MIMO GPR system for subsurface imaging

机译:三维逆时偏移应用于MIMO GPR系统的地下成像

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Compared with a conventional single-channel GPR system, a GPR system with a multi-input and multioutput (MIMO) antenna array is not only more efficient in 3D data acquisition, but also allows the collection of a multi-offset dataset, thereby providing additional information for more effective subsurface imaging. We develop a three-dimensional (3-D) reverse time migration (RTM) algorithm for processing MIMO GPR data. The finite-difference time-domain method with a convolutional perfect matching layer boundary is used to simulate the propagation of electromagnetic waves in subsurface dissipative media. The range and lateral resolution of a MIMO GPR system, which works at a stationary mode, is analyzed by numerical experiments. Furthermore, results of laboratory experiments would be presented in the extended abstract.
机译:与传统的单通道GPR系统相比,具有多输入多输出(MIMO)天线阵列的GPR系统不仅在3D数据采集中更加高效,而且还可以收集多偏移量数据集,从而提供了额外的功能有关更有效的地下成像的信息。我们开发了用于处理MIMO GPR数据的三维(3-D)反向时间迁移(RTM)算法。具有卷积完美匹配层边界的有限差分时域方法用于模拟电磁波在地下耗散介质中的传播。通过数值实验分析了在固定模式下工作的MIMO GPR系统的范围和横向分辨率。此外,实验室实验的结果将以扩展摘要的形式呈现。

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