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CAD-Oriented Analysis of Cylindrical and Spherical Dielectric Resonators in Cavities and MIC Environments by Means of Finite Elements

机译:基于有限元的腔和MIC环境中圆柱和球形介质谐振器的CAD定向分析

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摘要

Cylindrical dielectric resonators (DRs) have been very useful to microwave engineers in the design and manufacture of many devices and communication systems. New dielectric materials and shapes are tested in order to improve the response of these devices. At high frequency, the miniaturization of components, together with the need to establish the resonant frequencies and field distributions accurately, recommends the use of geometrically flexible and reliable numerical methods as the finite element method (FEM). In this study, a code based in the axisymmetric FEM is implemented. A semi-automatic mesher and postprocessing modules allow resonant frequencies, field distributions, and the Q-factor to be obtained by changing the shape or the properties of the material in a reliable way. Some classic cylindrical DRs are reviewed, and new geometries such as spherical and hemispherical shapes on substrates are also studied.
机译:圆柱形介质谐振器(DR)对于微波工程师在许多设备和通信系统的设计和制造中非常有用。测试了新的介电材料和形状,以改善这些设备的响应。在高频下,组件的小型化以及精确建立谐振频率和场分布的需求,建议使用几何上灵活且可靠的数值方法作为有限元方法(FEM)。在这项研究中,实现了基于轴对称有限元的代码。半自动网格划分器和后处理模块允许通过可靠地更改材料的形状或特性来获得共振频率,场分布和Q因子。审查了一些经典的圆柱DR,并研究了新的几何形状,例如基板上的球形和半球形。

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