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Highly Efficient Technique for the Full-Wave Analysis of Circular Waveguide Filters Including Off-Centered Irises

机译:包含偏心虹膜的圆形波导滤波器全波分析的高效技术

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摘要

A rigorous method for the full-wave analysis and design of waveguide filters implemented in circular waveguide technology, and including off-centered circular irises, is presented. The implemented tool is based on an integral equation technique, which provides a full-wave representation of the elementary blocks of the analyzed components in terms of generalized impedance matrices. With the aim of improving the efficiency of the developed tool, the radial variation of the modal solutions of the circular waveguides has been expressed in terms of sinusoidal functions, thus avoiding the use of the more cumbersome Bessel's functions employed in the classical formulation. Furthermore, line integrals have been used (instead of surface integrals) to compute the modal coupling coefficients of the planar waveguide junctions involved in the considered filters, thus drastically reducing the CPU effort related to the implemented tool. New designs concerning band-pass filters including off-centered circular irises are also provided. The obtained results show that the relative position of the considered circular irises can be considered as a new design parameter with a noteworthy influence on the electrical response of the investigated components. The accuracy of the proposed method has been successfully validated by comparing the obtained results with data extracted from both the technical literature and a commercial software based on the finite-element method.
机译:提出了一种严格的方法,用于以圆形波导技术实现的波导滤波器的全波分析和设计,其中包括偏心的圆形光圈。所实现的工具基于积分方程技术,该技术以广义阻抗矩阵的形式提供了所分析组件基本块的全波表示。为了提高开发工具的效率,圆形波导模态解决方案的径向变化已用正弦函数表示,因此避免了使用经典公式中较为繁琐的贝塞尔函数。此外,已经使用线积分(而不是表面积分)来计算所考虑的滤波器中所涉及的平面波导结的模态耦合系数,从而大大减少了与已实现工具有关的CPU工作量。还提供了有关带通滤波器的新设计,其中包括偏心的圆形光圈。获得的结果表明,可以将所考虑的圆形光圈的相对位置视为新的设计参数,并对所研究部件的电响应产生显着影响。通过将获得的结果与从技术文献和基于有限元方法的商业软件中提取的数据进行比较,已成功验证了该方法的准确性。

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