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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Discretized Gabor-based beam algorithm for time-harmonic radiation from two-dimensional truncated planar aperture distributions .I. Formulation and solution
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Discretized Gabor-based beam algorithm for time-harmonic radiation from two-dimensional truncated planar aperture distributions .I. Formulation and solution

机译:离散的基于Gabor的光束算法从二维截断的平面孔径分布中获取时谐辐射配方和溶液

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摘要

In this first part of a two-paper sequence, we develop a Gabor-based Gaussian beam (GB) method for the representation of three-dimensional (3-D) time-harmonic vector electromagnetic fields excited by two-dimensional (2-D) truncated arbitrarily polarized planar aperture field distributions. The biorthogonal Gabor basis is tied to a lattice in the discretized four-dimensional (4-D) [configuration (space)]-[spectrum (wavenumber)] phase space which spans the 2-D aperture plane. This study generalizes previous investigations of the simpler corresponding procedure for 2-D fields excited by one-dimensional (1-D) apertures. By subsequent specialization, in the 1-D aperture case, to narrow-waisted 2-D ray-like GBs, we have shown that tracking such beams through interactions with complex environments and recombining them to synthesize the total 2-D field produces robust, efficient and accurate algorithms that are useful for a variety of forward and inverse scattering scenarios. Extension to the time domain via narrow-waisted pulsed GBs has likewise been considered. These potential applications have motivated the extension here to general 3-D EM fields excited by time-harmonic 2-D truncated apertures. The presentation relates each step in the analytic development to a corresponding step in the 1-D aperture case, thereby highlighting the complications (in the parameterizing phase space) associated with the 2-D aperture problem. The outcome is the formal exact solution of the problem under consideration.
机译:在两篇论文的第一部分中,我们开发了一种基于Gabor的高斯束(GB)方法,用于表示由二维(2-D)激发的三维(3-D)时间谐波矢量电磁场)截断了任意极化的平面孔径场分布。双正交Gabor基与离散二维(4-D)[构型(空间)]-[光谱(波数)]相空间中的晶格相关,该相空间跨越2-D孔径平面。这项研究概括了先前对由一维(1-D)孔径激发的2D场的更简单对应过程的研究。通过随后的专业化,在一维光圈的情况下,到窄腰的二维射线状GBs,我们已经表明,通过与复杂环境的相互作用跟踪此类光束并将其重组以合成总的二维场,可以产生鲁棒的,高效且准确的算法,可用于多种正向和反向散射场景。同样已经考虑了通过窄腰脉冲GB扩展到时域。这些潜在的应用促使此处扩展到由时谐2D截断光阑激发的一般3D EM场。该演示将分析开发中的每个步骤与一维孔径情况下的相应步骤相关联,从而突出了与二维孔径问题相关的复杂性(在参数化相空间中)。结果是所考虑问题的形式上的精确解决方案。

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