EM Scattering Analysis of Cylinder Array Using Iterative T-Matrix Theory

Qi-kun Liu, Dongfang Zhou, Feng Xing, Z. Xing, Y. Wang, Hui Zhou, Zhen Tu
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Abstract

A new iterative T-matrix algorithm combined with iterative scattering process (ISP) has proposed for dealing with the scattering characteristics of cylindrical objects. The relationship between incident and transition filed can evolve from the cylindrical harmonics of one cylinder. With the iterative scattered field among cylinders each time considered as the incident field of iterative process next time, total iterative scattering matrix can be reached. With iterative curves each time analyzed, it is verified that the process of iterative among the cylinders is equivalent to the coupling process among cylinders. To test the veracity of the proposed theory, scattering of four cylinders with arbitrary radius has been calculated with both iterative T-matrix algorithm and the method of moments (MoM). The results compared show that the iterative T-matrix algorithm and MoM agree well.
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基于迭代t矩阵理论的圆柱阵列电磁散射分析
提出了一种结合迭代散射过程的迭代t矩阵算法来处理圆柱形物体的散射特性。入射场和跃迁场之间的关系可以从一个圆柱体的圆柱谐波演化而来。将每次柱体间的迭代散射场作为下次迭代过程的入射场,可以得到总迭代散射矩阵。通过对每次迭代曲线的分析,验证了缸间迭代过程等价于缸间耦合过程。为了验证所提理论的准确性,用迭代t矩阵算法和矩量法计算了任意半径的四个圆柱体的散射。结果表明,迭代t矩阵算法与MoM算法吻合较好。
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