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Analysis of ferrite circulators by 2-D finite-element and recursive Green's function techniques

机译:用二维有限元和递归格林函数技术分析铁氧体环行器

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摘要

Ferrite circulator operation is analyzed here by two techniques. The first employs a two-dimensional (2-D) finite-element (FE) technique, using a publicly available FE package. We show how to adapt this code to the solution of the magnetostatic equations and solve for the distribution of internal magnetic field inside a round ferrite puck of finite thickness, and use it to verify existing approximations for the demagnetizing fields. Additionally, the 2-D FE method has also been used to calculate the RF fields and scattering parameters in circulators having noncircular shapes, as well as nonuniform material properties and bias conditions. We have also investigated the field solutions for round circulators, calculated using a recursive Green's function (RGF) technique. This technique allows for radially varying properties in the material or bias fields, and thus accommodates the nonuniform demagnetizing field distribution in finite pucks. A comparison of the results of this technique with experiment is made. We show how the impedance-matching structures attached to the circulator affect the field distributions inside, and present plots of the field distributions as a function of frequency, which provide insight into circulator operation.
机译:铁氧体循环器的工作在此通过两种技术进行分析。第一种方法是使用公开可用的FE软件包使用二维(2-D)有限元(FE)技术。我们展示了如何使该代码适应静磁方程的解,并解决内部磁场在有限厚度的圆形铁氧体圆盘内部的分布,并使用它来验证退磁场的现有近似值。另外,二维有限元方法也已经用于计算具有非圆形形状以及不均匀材料特性和偏置条件的环行器中的RF场和散射参数。我们还研究了使用循环格林函数(RGF)技术计算的圆形循环器的现场解决方案。该技术允许材料或偏置场的径向变化,从而适应有限圆盘中不均匀的消磁场分布。将该技术的结果与实验进行了比较。我们展示了附着在循环器上的阻抗匹配结构如何影响内部的场分布,并展示了场分布作为频率的函数的图,从而为循环器的运行提供了见识。

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