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Multi-resolution subspace-based optimization method for solving three-dimensional inverse scattering problems

机译:基于多分辨率子空间的三维逆散射优化方法

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摘要

An innovative methodology is proposed to solve quantitative three-dimensional microwave imaging problems formulated within the contrast source framework. The introduced technique is based on the combination of an efficient iterative multiscaling strategy aimed at mitigating local minimum issue arising in inverse scattering problems, and a local search algorithm based on the subspace-based optimization method (SOM) devoted to effectively retrieving both the "deterministic" and the "ambiguous" parts of the unknown contrast currents. To achieve this goal, a nested iteration process is adopted in which the outer loop iteratively refines the region of interest (ROI) where the scatterers are detected, while the inner loop retrieves the dielectric properties of the scatterers within the ROIs. Selected numerical examples are also given to show the validity and robustness of the proposed algorithm in comparison with state-of-the-art techniques. (C) 2015 Optical Society of America
机译:提出了一种创新的方法来解决在对比源框架内制定的定量三维微波成像问题。引入的技术基于旨在减轻逆散射问题中出现的局部最小问题的有效迭代多尺度策略与基于子空间优化方法(SOM)的局部搜索算法的结合,该算法致力于有效地检索“确定性”和未知对比电流的“模糊”部分。为了实现此目标,采用了嵌套迭代过程,其中,外循环迭代地优化检测到散射体的感兴趣区域(ROI),而内循环检索ROI中散射体的介电特性。还给出了一些数值示例,以显示与最新技术相比所提出算法的有效性和鲁棒性。 (C)2015年美国眼镜学会

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