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MUSIC Imaging and Electromagnetic Inverse Scattering of Multiple-Scattering Small Anisotropic Spheres

机译:多散射小各向异性球的MUSIC成像和电磁逆散射

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摘要

The Foldy-Lax equation is used to derive a multiple scattering model for the multiple-scattering small anisotropic spheres. By this model, if the number of the non-zero singular values of the multistatic response (MSR) matrix is smaller than the number of the antennas, the range space of the MSR matrix is found to be spanned by the background Green''s function vectors corresponding to the $x, y$ and $z$ components of the electric and magnetic dipoles induced in each scatterer, which indicates that the multiple signal classification (MUSIC) method could be implemented to obtain the locations of the scatterers. After estimating the positions of the scatterers, a non-iterative analytical method is proposed for retrieving the polarization strength tensors as well as the orientations of the principle axes of each scatterer. Two numerical simulations show that, the MUSIC method and the non-iterative method are efficacious for the nonlinear inverse scattering problem of determining the locations and polarization strength tensors of multiple-scattering small anisotropic spheres. Such methods could also be applied to the inversion of small isotropic spheres or extended to the inversion of small bianisotropic spheres.
机译:Foldy-Lax方程用于导出多次散射的各向异性小球的多次散射模型。通过该模型,如果多静态响应(MSR)矩阵的非零奇异值的数量小于天线的数量,则发现MSR矩阵的范围空间被背景Green覆盖。与每个散射体中感应的电和磁偶极子的$ x,y $和$ z $分量相对应的函数向量,这表明可以采用多信号分类(MUSIC)方法来获得散射体的位置。在估计了散射体的位置之后,提出了一种非迭代分析方法来检索偏振强度张量以及每个散射体的主轴方向。两种数值模拟表明,MUSIC方法和非迭代方法对于确定多重散射小各向异性球的位置和极化强度张量的非线性逆散射问题有效。这样的方法也可以应用于小各向同性球的反演,或扩展到小各向异性的小球的反演。

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