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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Subspace-Based Distorted-Born Iterative Method for Solving Inverse Scattering Problems
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Subspace-Based Distorted-Born Iterative Method for Solving Inverse Scattering Problems

机译:基于子空间的扭曲变形迭代方法求解逆散射问题

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摘要

The electromagnetic inverse scattering problem can be effectively handled by means of the so-called distorted-Born iterative method (DBIM). A new method, denoted as the subspace-based DBIM (S-DBIM), is proposed. It updates the Green's function for the inhomogeneous background at each step of the iterative procedure, like DBIM. By linearly retrieving the deterministic subspace of the induced current, the S-DBIM estimates the total electric field more accurately than the DBIM does and thus exhibits a faster convergence speed. To avoid the computationally demanding and arguably hard choice of the optimal Tikhonov regularization term involved in the procedure, a second version of S-DBIM, which is more robust against noise and has faster convergence, is also proposed. Thorough numerical simulations show that both versions of S-DBIM achieve super-resolved retrievals of the benchmark “Austria” profile.
机译:电磁逆散射问题可以通过所谓的失真波恩迭代法(DBIM)有效处理。提出了一种新方法,称为基于子空间的DBIM(S-DBIM)。它会在迭代过程的每个步骤(例如DBIM)中针对不均匀背景更新Green函数。通过线性检索感应电流的确定性子空间,S-DBIM比DBIM可以更准确地估算总电场,因此具有更快的收敛速度。为避免该过程中涉及的最佳Tikhonov正则化项的计算量大且可能难以选择,还提出了第二版S-DBIM,它对噪声更鲁棒,并且收敛速度更快。全面的数值模拟表明,两个版本的S-DBIM都可以实现对“基准”“奥地利”配置文件的超分辨检索。

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