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Combining spatial support information and shape-based method for tomographic imaging inside a microwave cylindrical scanner

机译:结合空间支持信息和基于形状的微波圆柱形扫描仪内部的层析成像方法

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A nonlinear inverse scattering problem is solved to retrieve the permittivity maps inside a microwave cylindrical scanner of circular cross-section. In this article, we show how we can improve this minimization scheme by taking advantage of several a priori pieces of information. In particular, a global representation based on a Zernike basis expansion is introduced in order to restrain the class of solutions to functions which have circular spatial support, as is the case with the encountered geometrical configuration. The level-set function formalism is also exploited as the targets are known to be homogeneous by parts. We will show how we can combine the spatial support information and the binary nature of the scatterer, with limited changes of the inversion algorithm. Both synthetic and experimental results will be presented in order to highlight the importance of combining all the pieces of available information.
机译:解决了非线性逆散射问题,以获取圆形横截面的微波圆柱形扫描仪内部的介电常数图。在本文中,我们展示了如何利用一些先验信息来改进这种最小化方案。尤其是,引入了基于Zernike基展开的全局表示,以限制具有圆形空间支持的函数的解类,就像遇到的几何配置一样。水平集功能形式主义也被利用,因为已知目标部分是同质的。我们将展示如何在反演算法的有限更改下结合空间支持信息和散射体的二进制性质。将同时展示合成和实验结果,以强调组合所有可用信息的重要性。

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  • 来源
    《Inverse Problems in Science and Engineering》 |2010年第1期|p.19-34|共16页
  • 作者单位

    Institut Fresnel, Aix-Marseille Université, Ecole Centrale Marseille, CNRS, Domaine universitaire de St Jérôme, 13013 Marseille, France;

    Total, Exploration & Production, Oil & Gas Technical Information System, Avenue Larribau, 64018 Pau, France;

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