首页> 外文会议>2011 IEEE International Symposium on Antennas and Propagation (APSURSI) >Multilayer microwave filter design using a locally implicit discontinuous Galerkin finite-element time-domain (DG-FETD) method
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Multilayer microwave filter design using a locally implicit discontinuous Galerkin finite-element time-domain (DG-FETD) method

机译:使用局部隐式不连续Galerkin有限元时域(DG-FETD)方法的多层微波滤波器设计

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摘要

A design of a multilayer microwave filter with electrical small parts is presented in this paper using an efficient implementation of locally implicit discontinuous Galerkin finite element time domain method (LIDG-FETD). Discontinuous Galerkin''s method allows the division of the model in several domains, with a reduction of the total number of unknowns by using unstructured meshes. Furthermore, in order to get an unconditionally stable (arbitrary Δt) and efficient time stepping algorithm, the implicit Crank-Nicolson method with block successive over relaxation (CN-BSOR) was implemented. Accurate and fast results were obtained respect to commercial software.
机译:本文利用局部隐含不连续伽勒金有限元时域方法(LIDG-FETD)的有效实现,提出了一种具有小电气部件的多层微波滤波器的设计。间断Galerkin方法允许将模型划分为多个域,并通过使用非结构化网格减少未知总数。此外,为了获得无条件稳定(任意Δt)和高效的时间步进算法,实现了具有块连续过度松弛的隐式Crank-Nicolson方法(CN-BSOR)。相对于商业软件而言,获得了准确而快速的结果。

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