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Reconstruction of Three-Dimensional Objects in Layered Media: Numerical Experiments

机译:分层介质中三维物体的重构:数值实验

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摘要

We have developed a fully three-dimensional electromagnetic inverse scattering technique in a multilayered medium via the contrast source inversion. The key issues on the three-dimensional (3-D) forward and adjoint operations related to the dyadic Green's operators are briefly addressed to ensure the efficient performance of the algorithm in layered media. It is shown that it is feasible to achieve good reconstruction quality with only a few sources and a two-dimensional receiver array, provided that the signal-to-noise ratio is adequate. The effects of the interface and of the uncertainty in the background layered medium are illustrated in the simulation. The developed 3-D electromagnetic inverse scattering technique can be effectively applied to surface ground penetrating radar survey in multilayered media.
机译:我们已经通过对比源反演在多层介质中开发了一种全三维电磁逆散射技术。简要解决了与二进格林操作符有关的三维(3-D)正向和伴随运算的关键问题,以确保算法在分层媒体中的高效性能。结果表明,只要信噪比足够大,仅使用几个信号源和二维接收器阵列即可获得良好的重建质量。仿真中说明了界面和背景分层介质中不确定性的影响。所开发的3-D电磁逆散射技术可以有效地应用于多层介质中的地面穿透雷达测量。

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