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A hybrid broadband analysis approach for surface-wire junctions structures by applying AIM and asymptotic waveform evaluation technique

机译:应用AIM和渐近波形评估技术的表面线结结构混合宽带分析方法

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摘要

The asymptotic waveform evaluation (AWE) technique is utilized to deal with broadband electromagnetic problems of surface-wire junction geometries in this paper. To ensure the current continuity, triangles-to-segments junction model is used and the Rao-Wilton-Glisson (RWG) and triangular basis functions are used to solve the distributions of current on perfect electric conductor and wire, respectively. Then, the current on surface conductor, wire, and junctions are expanded in a rational function via Pade approximation. The AWE technique needs to store the high-order derivatives of the self-impedance and mutual-impedance matrices of surface-wire, which increase the memory requirements. Thus, the adaptive integral method is employed to reduce memory requirements and to accelerate the matrix-vector multiplications in an iterative solver. Finally, some numerical examples are shown to demonstrate the efficiency and accuracy of the proposed method
机译:本文采用渐近波形评估(AWE)技术来处理表面线结几何形状的宽带电磁问题。为了确保电流的连续性,使用了三角形到段的连接模型,并使用Rao-Wilton-Glisson(RWG)和三角形基函数分别求解了理想电导体和电线上的电流分布。然后,通过Pade逼近以合理的函数扩展表面导体,导线和结上的电流。 AWE技术需要存储表面线的自阻抗矩阵和互阻抗矩阵的高阶导数,从而增加了存储需求。因此,在迭代求解器中,采用自适应积分方法来减少存储需求并加速矩阵向量乘法。最后,通过一些数值例子说明了该方法的有效性和准确性。

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