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Shrinkage-thresholding enhanced born iterative method for solving 2D inverse electromagnetic scattering problem

机译:收缩阈值增强的自然迭代法求解二维逆电磁散射问题

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摘要

A numerical framework that incorporates recently developed iterative shrinkage thresholding (IST) algorithms within the Born iterative method (BIM) is proposed for solving the two-dimensional inverse electromagnetic scattering problem. IST algorithms minimize a cost function weighted between measurement-data misfit and a zeroth/first-norm penalty term and therefore promote "sharpness" in the solution. Consequently, when applied to domains with sharp variations, discontinuities, or sparse content, the proposed framework is more efficient and accurate than the "classical" BIM that minimizes a cost function with a second-norm penalty term. Indeed, numerical results demonstrate the superiority of the IST-BIM over the classical BIM when they are applied to sparse domains: Permittivity and conductivity profiles recovered using the IST-BIM are sharper and more accurate and converge faster. © 1963-2012 IEEE.
机译:提出了在Born迭代方法(BIM)内结合了最新开发的迭代收缩阈值(IST)算法的数值框架,用于解决二维逆电磁散射问题。 IST算法使在测量数据失配和零/第一范数惩罚项之间加权的成本函数最小化,因此提高了解决方案中的“清晰度”。因此,当应用于具有急剧变化,不连续或内容稀疏的域时,所提出的框架比“经典” BIM更有效和准确,BIM使用第二范数惩罚项将成本函数最小化。的确,数值结果表明,将IST-BIM应用于稀疏域时,其性能优于传统BIM:使用IST-BIM恢复的介电常数和电导率分布曲线更清晰,更准确且收敛更快。 ©1963-2012 IEEE。

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