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A three-dimensional self-adaptive hp finite element method for the characterization of waveguide discontinuities

机译:表征波导不连续性的三维自适应hp有限元方法

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摘要

We propose the use of a highly-accurate three-dimensional (3D) fully automatic hp-adaptive finite element method (FEM) for the characterization of rectangular waveguide discontinuities. These discontinuities are either the unavoidable result of mechanical/electrical transitions or deliberately introduced in order to perform certain electrical functions in modern communication systems. The proposed numerical method combines the geometrical flexibility of finite elements with an accuracy that is often superior to that provided by semi-analytical methods. It supports anisotropic refinements on irregular meshes with hanging nodes, and isoparametric elements. It makes use of hexahedral elements compatible with high-order H(curl)H(curl) discretizations. The 3D hp-adaptive FEM is applied for the first time to solve a wide range of 3D waveguide discontinuity problems of microwave communication systems in which exponential convergence of the error is observed.
机译:我们建议使用高精度的三维(3D)全自动hp自适应有限元方法(FEM)来表征矩形波导不连续性。这些不连续性要么是机械/电气转换的不可避免结果,要么是故意引入的,以便在现代通信系统中执行某些电气功能。所提出的数值方法将有限元的几何灵活性与通常优于半分析方法提供的精度相结合。它支持对具有悬挂节点和等参元素的不规则网格进行各向异性细化。它使用与高阶H(curl)H(curl)离散化兼容的六面体元素。首次应用3D hp自适应FEM解决了微波通信系统中广泛的3D波导不连续性问题,在该问题中观察到了误差的指数收敛。

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