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Inversion of Phaseless Total Field Data Using a Two-Step Strategy Based on the Iterative Multiscaling Approach

机译:基于迭代多尺度方法的两步法无相全场数据反演

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In this paper, a new approach for the quantitative electromagnetic imaging of unknown scatterers located in free space from amplitude-only measurements of the total field is proposed and discussed. The reconstruction procedure splits the problem into two steps. The method is based on the use of an inverse source algorithm to first complete the scattering data by estimating the distribution of the radiated field in the investigation domain. The object's function profile is then retrieved from the phaseless data via an iterative multiresolution procedure integrated with an effective minimization technique based on the particle swarm algorithm. Numerical examples are provided to assess the effectiveness of the whole two-step strategy in the presence of synthetic noise-corrupted data as well as in dealing with experimental data sets. Comparisons with full-data and "bare" approaches are reported as well
机译:在本文中,提出并讨论了一种新的方法,该方法可以通过仅对整个场的振幅进行测量来对位于自由空间中的未知散射体进行定量电磁成像。重建过程将问题分为两个步骤。该方法基于使用反向源算法,首先通过估计调查域中辐射场的分布来完成散射数据。然后,通过结合基于粒子群算法的有效最小化技术的迭代多分辨率过程,从无相位数据中检索对象的功能配置文件。提供了数值示例,以评估在存在合成噪声损坏数据以及处理实验数据集的情况下整个两步策略的有效性。还报告了与全数据和“裸”方法的比较

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