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3D hp-adaptive finite element simulations of bend, step, and magic-T electromagnetic waveguide structures

机译:弯曲,阶梯和Magic-T电磁波导结构的3D hp自适应有限元模拟

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摘要

Metallic rectangular waveguides are often the preferred choice on telecommunication systems and medical equipment working on the upper microwave and millimeter wave frequency bands due to the simplicity of its geometry, low losses, and the capacity to handle high powers. Waveguide translational symmetry is interrupted by the unavoidable presence of bends, transitions, and junctions, among others. This paper employs a 3D hp self-adaptive grid-refinement finite element strategy for the solution of these relevant electromagnetic waveguide problems. These structures often incorporate dielectrics, metallic screws, round corners, and so on, which may facilitate its construction or improve its design, but significantly difficult its modeling when employing semi-analytical techniques. The dp-adaptive finite element method enables accurate modeling of these structures even in the presence of complex materials and geometries. Numerical results demonstrate the suitability of the hp-adaptive method for modeling these waveguide structures, delivering errors below 0.5% with a limited number of unknowns. Solutions of waveguide problems obtained with the self-adaptive hp-FEM are of comparable accuracy to those obtained with semi-analytical techniques such as the Mode Matching method, for problems where the latest methods can be applied. At the same time, the hp-adaptive FEM enables accurate modeling of more complex waveguide structures.
机译:金属矩形波导由于其几何形状的简单性,低损耗和承受大功率的能力,通常是在较高微波和毫米波频段上工作的电信系统和医疗设备上的首选。波导的平移对称性由于不可避免地存在弯曲,过渡和交汇处而中断。本文采用了3D hp自适应网格细化有限元策略来解决这些相关的电磁波导问题。这些结构通常包含电介质,金属螺钉,圆角等,这些结构可能有助于其构造或改进其设计,但在采用半分析技术时却很难建模。 dp自适应有限元方法即使在存在复杂材料和几何形状的情况下也可以对这些结构进行精确建模。数值结果表明,采用hp自适应方法对这些波导结构建模的适用性,在未知数有限的情况下,可提供低于0.5%的误差。对于可以应用最新方法的问题,通过自适应hp-FEM获得的波导问题的解决方案与通过模式匹配方法等半分析技术获得的解决方案具有相当的精度。同时,支持hp的FEM可以对更复杂的波导结构进行精确建模。

著录项

  • 来源
    《Journal of computational science》 |2014年第2期|65-75|共11页
  • 作者单位

    Departamento de Ingenieria Audiovisual y Comunicaciones, Universidad Politecnica de Madrid, Madrid, Spain;

    Departamento de Teoria de la Senaly Comunicaciones, Universidad Carlos Ⅲ de Madrid, Spain;

    Departamento de Teoria de la Senaly Comunicaciones, Universidad Carlos Ⅲ de Madrid, Spain;

    Department of Applied Mathematics, Statistics, and Operational Research, University of the Basque Country (UPV/EHU), Leioa, Spain IKERBASQUE, Basque Foundation for Science, Bilbao, Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Finite element method (FEM); hp-Adaptivity; Electromagnetic waveguides;

    机译:有限元法(FEM);hp-适应性;电磁波导管;

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