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Electromagnetic Modeling of a Periodic Array of Fibers Embedded in a Panel with Multiple Fibers Missing

机译:缺少多纤维缺失的面板中嵌入式纤维阵列的电磁建模

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Our goal is to detect defects in composite materials composed by multilayer planar plates with a periodic set of circular cylindrical fibers embedded within each layer. As a starter, the work presented is electromagnetic (EM) modeling and imaging of missing fibers in a fiber array standing in air. The multiple scattering method is utilized to analyze the electromagnetic behavior, and the corresponding imaging model is established directly from Lippman-Schwinger integral formulation. With the imaging model, standard Multiple Signal Classification (MUSIC), and the proposed joint sparsity which borrows the idea from sparsity theory, are applied to retrieve the locations of missing fibers. Various numerical results are provided to illustrate availability and accuracy of the modeling and imaging.
机译:我们的目标是检测由多层平面板组成的复合材料中的缺陷,其具有嵌入每层内的周期性的圆柱形纤维。作为起动器,所呈现的工作是在空气中站立的纤维阵列中缺失纤维的电磁(EM)建模和成像。利用多种散射方法来分析电磁行为,并且直接从Lippman-Schwinger积分配方建立相应的成像模型。通过成像模型,标准多个信号分类(音乐)以及借用稀疏性理论的想法的提议的关节稀疏性,应用于检索缺失纤维的位置。提供了各种数值结果,以说明建模和成像的可用性和准确性。

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