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Improved Finite-Element Formulation in Terms of the Magnetic Field Vector for Dielectric Waveguides

机译:介电波导磁场矢量方面的改进有限元公式

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摘要

An improved finite-element method for the analysis of dielectric waveguides is formulated in terms of all three components of the magnetic field H. In this approach, the spurious, nonphysical solutions do not appear anywhere above the "air-line," and therefore the present formulation is very useful for the analysis of the surface-wave modes of dielectric waveguides. The application of this improved finite-element method to the dielectric waveguides with perfect electric and magnetic conductors is also discussed. In particular, the discussion is how to use the conditions on a boundary surface of a perfect electric or magnetic conductor whose normal direction is not coincident with the direction of a coordinate axis. Application of these boundary conditions for perfect conductors to the dielectric waveguides with planes of symmetry reduces the matrix size. The strength of this approach to boundary conditions is not just the economical use of computer memory but the elimination of spurious solutions through rigorous enforcement of boundary conditions as well.
机译:针对磁场H的所有三个分量,提出了一种用于分析介电波导的改进的有限元方法。在这种方法中,杂散的非物理解不会出现在“空气线”上方,因此本发明的配方对于介电波导的表面波模式的分析非常有用。还讨论了这种改进的有限元方法在具有理想电导体和磁导体的介质波导中的应用。特别地,讨论的是如何使用法线方向与坐标轴方向不一致的完美电导体或磁导体的边界面上的条件。将这些理想导体的边界条件应用于具有对称平面的介电波导可减小矩阵尺寸。这种处理边界条件的方法的优势不仅在于经济地使用计算机内存,而且还通过严格执行边界条件来消除虚假的解决方案。

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