散射
快速傅里叶变换
物理
各向异性
傅里叶变换
反向
电介质
计算物理学
积分方程
数学分析
电磁场
介电常数
光学
逆散射问题
数学
几何学
算法
光电子学
量子力学
作者
Jianwen Wang,Jiawen Li,Yanjin Chen,Feng Han,Qing Liu
标识
DOI:10.1109/tap.2020.2972636
摘要
This communication studies 3-D electromagnetic (EM) scattering and inverse scattering of arbitrary anisotropic dielectric objects embedded in multilayered media. Different from previous work, the scatterer is not only arbitrary anisotropic, but also the arbitrary anisotropy of the layered background media is formed by rotation of the principal axes of uniaxial media. In addition, the scatterers are allowed to be placed across layer boundaries. The forward model is formulated by the electric field integral equation (EFIE), solved by the biconjugate gradient stabilized (BCGS) method, and accelerated by the fast Fourier transform (FFT). The time complexity is analyzed for the BCGS-FFT applied to layered arbitrary anisotropic media. In the inversion model, the variational Born iterative method (VBIM) is employed to reconstruct the arbitrary anisotropic profiles of both the permittivity and conductivity. Numerical simulations are performed to verify the feasibility and antinoise ability of the forward and inverse solvers in the circumstance of layered arbitrary anisotropic background media.
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