Simulation Of The Structure FSS Using The WCIP Method For Dual Polarization Applications

Abdelmalik Mekaoussi, M. Titaouine
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Abstract

In this work, we studied an L-shaped frequency selective surface (FSS) by a method called Wave Concept Iterative Procedure (WCIP), this method developed from the Modal Fast Transformation (FMT) is based on the cross- formulation. wave and the solution obtained by an iterative procedure does not use the matrix to ensure convergence and the procedure is stopped when it arrives at convergence, for this geometry the results of a single resonance obtained by the WCIP method have a resonant frequency of 5.35 GHz with a band bandwidth of 2.3 GHz, when the structure is excited in the X direction, a frequency at 10.35 GHz with a bandwidth of 0.44 GHz when the structure is excited in the Y direction. The simulation of the results obtained by the WCIP method is compared with the results of the software HFSS 13.0 (High Frequency Structure Simulator), we find a good agreement.
双偏振结构FSS的WCIP模拟
本文采用波浪概念迭代法(WCIP)研究了l型频率选择曲面,该方法是基于交叉公式的模态快速变换(FMT)发展而来的。波和解决方案通过迭代过程不使用矩阵来保证收敛性和过程停止当它到达收敛,这个几何的结果一个共振WCIP方法获得的谐振频率为5.35 GHz的频带带宽2.3 GHz,兴奋在X方向上的结构时,频率为10.35 GHz 0.44 GHz的带宽时,结构是兴奋在Y方向上。将WCIP方法得到的仿真结果与HFSS 13.0 (High Frequency Structure Simulator)软件的仿真结果进行了比较,发现两者吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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