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Evaluation of eigenmode quality factor of large complex cavities based on PEC linear finite element formulation

机译:基于PEC线性有限元公式的大型复杂腔本征模品质因子评估。

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摘要

Finite conductivity losses of arbitrarily shaped and inhomogeneously loaded two- and three-dimensional structures are evaluated to a practical accuracy, solving a linear eigenproblem formulated on perfect electric conductors (PECs). This scheme mimics the analytical approach classically employed for canonically shaped waveguides and cavities. The normal electric and tangential magnetic modal fields, obtained assuming all metallic surfaces as PECs, are practically unchanged in the finite conductivity case. These are utilised to evaluate the previously vanished tangential electric and normal magnetic field components through the Leontovich impedance conditions and in turn the related attenuation factors for 2D and quality factors for 3D structures. Validation against commercial electromagnetic simulators and nonlinear FEM formulations incorporating Leontovich conditions yields an agreement better than 2%.
机译:对任意形状和非均匀加载的二维和三维结构的有限电导率损耗进行了评估,以达到实用的精度,从而解决了在理想电导体(PEC)上提出的线性本征问题。该方案模仿了经典用于规范形状的波导和空腔的分析方法。假设所有金属表面都为PEC,则获得的法向电场和切向磁场模态在有限电导率情况下几乎没有变化。通过Leontovich阻抗条件,可以利用这些来评估先前消失的切向电场和法向磁场分量,进而评估2D的相关衰减因子和3D结构的质量因子。通过对商用电磁模拟器和包含Leontovich条件的非线性FEM公式进行验证,得出的协议优于2%。

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  • 来源
    《Electronics Letters》 |2012年第22期|p.1399-1401|共3页
  • 作者单位

    Microwaves Laboratory, Department of Electrical and Computer Engineering, Democritus University of Thrace;

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