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首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >A two-dimensional self-adaptive hp finite element method for the characterization of waveguide discontinuities. Part I: Energy-norm based automatic hp-adaptivity
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A two-dimensional self-adaptive hp finite element method for the characterization of waveguide discontinuities. Part I: Energy-norm based automatic hp-adaptivity

机译:用于表征波导不连续性的二维自适应hp有限元方法。第一部分:基于能量范数的自动hp适应性

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The accurate analysis and characterization of waveguide discontinuities is an important issue in microwave engineering. In some cases, the discontinuities are an unavoidable result of mechanical or electric transitions which effects have to be minimized; in other cases, the discontinuities are deliberately introduced into the waveguide to perform a certain electric function.rnThis is the first of two papers analyzing different types of rectangular waveguide discontinuities by using a fully automatic hp-adaptive finite element method. In this paper, a fully automatic energy-norm based hp-adaptive Finite Element (FE) strategy applied to a number of relevant waveguide structures, is presented. The methodology produces exponential convergence rates in terms of the energy-norm error of the solution against the problem size (number of degrees of freedom).rnExtensive numerical results demonstrate the suitability of the hp-method for solving different rectangular waveguide discontinuities. These results illustrate the flexibility, reliability, and high-accuracy of the method.rnThe self-adaptive hp-FEM provides similar (sometimes more) accurate results than those obtained with semi-analytical techniques such as the mode matching method, for problems where semi-analytical methods can be applied. At the same time, the hp-FEM provides the flexibility of modeling more complex waveguide structures and including the effects of dielectrics, metallic screws, round corners, etc., which cannot be easily considered when using semi-analytical techniques.rnIn the second part, the work is extended by presenting a fully automatic goal-oriented hp-adaptive FE in terms of the scattering or S-parameters which are widely used in microwave engineering for the characterization of microwave devices.
机译:波导不连续性的准确分析和表征是微波工程中的重要问题。在某些情况下,不连续是机械或电过渡不可避免的结果,必须将其影响降至最低;在其他情况下,将不连续性故意引入波导中以执行某些电功能。这是两篇论文中的第一篇,使用全自动hp自适应有限元方法分析了不同类型的矩形波导不连续性。在本文中,提出了一种适用于许多相关波导结构的基于能量规范的全自动hp有限元(FE)策略。该方法根据解决方案的能量范数误差对问题大小(自由度的数量)产生指数收敛速度。广泛的数值结果表明,hp方法适合解决不同的矩形波导不连续性。这些结果说明了该方法的灵活性,可靠性和高度准确性。对于半振动问题,自适应hp-FEM可提供与模式分析等半分析技术相似(有时更多)的准确结果。分析方法可以应用。同时,hp-FEM提供了对更复杂的波导结构进行建模的灵活性,其中包括电介质,金属螺钉,圆角等的影响,这在使用半分析技术时不容易考虑。 ,通过在散射或S参数方面提出一种全自动的,面向目标的hp自适应FE,扩展了工作范围,这些参数在微波工程中广泛用于表征微波设备。

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