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An implementation of the vectorial finite element analysis of anisotropic waveguides through a general-purpose PDE software

机译:通过通用PDE软件实现各向异性波导矢量有限元分析的实现

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This paper reports on the major progress in the development of an intelligent, interactive and automated system, based on the vector finite element method, and implemented within PDE/Protran problem solving environment. The system is known as WAVEGIDE and was originally developed by the authors for an efficient solution of inhomogeneous dielectric waveguides. In this paper, it has been further extended to the solution of anisotropic waveguiding structures. With our system, through an interactive "question-and-answer" session, which requires minimal knowledge of programming, the problem can be defined using high level PDE/Protran commands. It can then be simply and quickly solved by the main processor within this intelligent environment. To verify the convergence and accuracy of the present approach, numerical results (with respect to the grid density and element order) for a rectangular metallic waveguide half filled with dielectric are given and compared with other finite element methods. Numerical results for an anisotropic dielectric rectangular waveguide are also presented. These results clearly illustrate the accuracy and the ease of use of the modified WAVEGIDE program.
机译:本文报告了基于矢量有限元方法并在PDE / Protran问题解决环境中实现的智能,交互式和自动化系统开发的主要进展。该系统称为WAVEGIDE,最初是由作者开发的,用于有效解决非均匀介质波导问题。在本文中,它已被进一步扩展到各向异性波导结构的解决方案。在我们的系统中,通过一个交互的“问答”会话,该会话对编程的知识要求最少,可以使用高级PDE / Protran命令定义问题。然后,可以在此智能环境中由主处理器简单快速地解决它。为了验证本方法的收敛性和准确性,给出了半填充电介质的矩形金属波导的数值结果(相对于网格密度和元素阶数),并将其与其他有限元方法进行了比较。还给出了各向异性介质矩形波导的数值结果。这些结果清楚地说明了修改后的WAVEGIDE程序的准确性和易用性。

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