Analysis of Millimeter Wave Y-Junction Microstrip Circulator

F. Yang, H.C. Wu, W. Dou, Z.L. Sun
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Abstract

FEM (finite element method) based on the weak form of Helmholtz equation is first here employed to deal with the inhomogeneous structure, shielded Y-junction microstrip circulator at millimeter-wave band. The scattering parameters of the circulator are computed in two steps. As a first step, the field distribution in the shielded microstrip is calculated in the two-dimensional (2-D) FEM. In second step, the three-dimensional (3-D) Vector-FEM is used to model the inhomogeneous structure of the circulator, and FEM field are matched with the field of microstrip at the 3 interfaces. So a sparse matrix equation is obtained, and it is solved with the SSOR-BICG algorithm. Numerical results of the circulator are presented and compared when the ferrite disk radius changed. Also, the electric field distribution in the ferrite disk is depicted to show the circulating process.
毫米波y结微带环行器分析
本文首次采用基于弱形式亥姆霍兹方程的有限元法来处理毫米波屏蔽y结微带环行器的非均匀结构。循环器的散射参数分两步计算。首先,用二维有限元法计算了屏蔽微带中的场分布。第二步,采用三维矢量有限元法对环行器的非均匀结构进行建模,并在3个界面处将有限元场与微带场进行匹配。得到一个稀疏矩阵方程,并用SSOR-BICG算法求解。给出了环形器在铁氧体圆盘半径变化时的数值计算结果,并进行了比较。此外,还描述了铁氧体圆盘内的电场分布,以显示循环过程。
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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