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Near-subsurface imaging in an absorbing embedding medium with a multistatic/single frequency scanner

机译:使用多静态/单频扫描仪在吸收性嵌入介质中进行近地下成像

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摘要

Probing the near-subsurface in the presence of absorbing media is a very challenging problem. Within that framework, we analyse the capabilities of a mono-frequency/multistatic set-up for detecting shallowly buried targets. As the antennas constitute an important part of the probing device, an accurate method for modelling the antennas behaviour is proposed. This modelling, performed thanks to a correct balanced set of elementary sources, is then incorporated in the calculation of the scattered field, performed with a home-made Finite Element Method software. Efforts have also been put into the measurement procedure. The measured fields are thus post-processed with an efficient method which takes profit of the spectral bandwidth properties of the scattered field. These fields serve as input data for the inversion algorithm, an extension of the DORT method to elongated targets. This qualitative and fast imaging procedure, which exploits the spectral properties of the multistatic scattering matrix, has been adapted to the present stratified configuration. Imaging results of shallowly buried targets embedded in a high losses medium are presented to assess the well-behaviour of the proposed methodology.
机译:在存在吸收介质的情况下探测近地下是非常具有挑战性的问题。在此框架内,我们分析了单频/多静态设置用于检测浅埋目标的功能。由于天线是探测设备的重要组成部分,因此提出了一种精确的天线行为建模方法。由于使用了正确的平衡基本元素集,因此执行了该建模,然后将其合并到散射场的计算中,使用自制的有限元方法软件进行了建模。测量过程中也付出了很多努力。因此,利用有效方法对测量的场进行后处理,该方法利用了散射场的频谱带宽特性。这些字段用作反演算法的输入数据,反演算法是DORT方法对细长目标的扩展。利用多静态散射矩阵的光谱特性的这种定性和快速成像程序已经适应于当前的分层配置。提出了嵌入高损耗介质中的浅埋目标的成像结果,以评估所提出方法的良好性能。

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