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Impact of the antenna offset and the number of frequencies on layered media reconstruction using full-wave inversion in near-field conditions

机译:天线偏移和频率数量对在近场条件下使用全波反演的分层介质重构的影响

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Pipes and water leaks can potentially be detected using ground-penetrating radar (GPR). Recently, a new generalized model was developed to quantify the medium electrical properties by full-wave inverse modelling. It takes advantage of a closed form solution of Maxwell's equations for describing the coupled antenna-medium system. In this study, we used that model to evaluate the inverse problem for different radar configurations and various multilayered medium layouts. Numerical experiments were performed by generating and inverting synthetic Green's functions in order to show the influence of the antenna offset on the response surface topography of the objective functions. The impact of a reduced number of frequencies on these objective functions was also investigated for a monostatic configuration before combining this approach with a multioffset configuration. The results showed an improvement in the response surface topography when the number of antennas was increased. However, the importance of this enhancement varied according to the number of frequencies taken into account. It also pointed out the possibility of reducing the number of frequencies used for the inversion while preserving the information content. This work highlights the great potential of the model to improve the medium parameter retrieval while reducing the computation time.
机译:可以使用探地雷达(GPR)潜在地检测管道和漏水。最近,开发了一种新的广义模型,以通过全波逆模型对介质的电学性质进行量化。它利用Maxwell方程的封闭形式解来描述耦合的天线-介质系统。在这项研究中,我们使用该模型来评估不同雷达配置和各种多层介质布局的反问题。通过生成和求逆合成格林函数进行数值实验,以显示天线偏移对目标函数响应表面形貌的影响。在将这种方法与多偏移配置组合之前,还针对单静态配置研究了减少数量的频率对这些目标函数的影响。结果表明,当天线数量增加时,响应表面形貌得到改善。然而,这种增强的重要性根据所考虑的频率数量而变化。它还指出了在保留信息内容的同时减少用于反演的频率数量的可能性。这项工作突显了该模型在改善介质参数检索同时减少计算时间方面的巨大潜力。

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