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Analysis of the H-plane T-junction millimeter wave waveguide circulator with a ferrite sphere

机译:铁氧体球面H面T形结毫米波波导环行器的分析

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This paper presents an approximate but efficient field treatment of the new easy-to-fabricate ferrite sphere based H-plane waveguide circulator for potentially low-cost millimeter wave communication systems. A new three-dimension modeling strategy using a self-inconsistent mixed coordinates based mode matching technique is developed, i.e. the solutions of the Helmholz wave equations in the ferrite sphere and in the surrounding areas are deduced in the form of infinite summation of spherical, cylindrical and general Cartesian modes respectively. The point matching method is then used on the interface to numerically obtain the coefficients of different orders basis functions of the field. Therefore, the field distributions as well as he characteristics of the circulator are numerically calculated and the good agreement is observed between the numerical results and the measured data.
机译:本文为潜在的低成本毫米波通信系统提出了一种新的,易于制造的基于铁氧体球的H平面波导环行器的近似但有效的现场处理方法。提出了一种基于自洽混合坐标的模式匹配技术的三维建模策略,即以球面,圆柱面的无穷总和形式推导了铁素体球体及其周围区域的亥姆霍兹波动方程的解。和一般的笛卡尔模式。然后在界面上使用点匹配方法,以数值方式获得该字段的不同阶次基函数的系数。因此,对环行器的场分布及其特性进行了数值计算,并且在数值结果和测量数据之间观察到良好的一致性。

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