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Random Rough Surface Effects in Waveguides Using Mode Matching Technique and the Method of Moments

机译:使用模式匹配技术和矩量法的波导中的随机粗糙表面效应

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摘要

To address the rough surface effects in high speed interconnects on printed circuit boards and microelectronic packages, we study the electromagnetic wave propagation in a parallel plate waveguide with rough surface walls, using a mode matching technique in combination with the method of moments (MoM). In the formulation, a line source in the smooth section of the waveguide excites a summation of modal fields. For each waveguide modal excitation, the modal response fields in the rough surface section of the waveguide are obtained by the solution of a set of coupled surface integral equations through MoM. Results are illustrated for a variety of roughness types including the very rough case based on exponential correlation functions. The results are compared with the previously developed analytical second-order small perturbation method (SPM2) result and the finite element method (FEM). It is shown that for rough surfaces with large slopes, the mode matching MoM model gives a smaller enhancement factor than SPM2. It is also shown that MoM can give accurate solutions even for the very rough case of exponential correlation functions. The MoM method of rough surface simulation in waveguide geometry requires much less computational resources than FEM.
机译:为了解决印刷电路板和微电子封装上高速互连中的粗糙表面效应,我们使用模式匹配技术结合矩量法(MoM)研究了具有粗糙表面壁的平行板波导中的电磁波传播。在公式中,波导平滑段中的线源激发了模态场的总和。对于每个波导模态激励,通过MoM求解一组耦合的表面积分方程,可以得到波导粗糙表面部分的模态响应场。说明了各种粗糙度类型的结果,包括基于指数相关函数的非常粗糙的情况。将结果与先前开发的分析二阶小扰动方法(SPM2)结果和有限元方法(FEM)进行比较。结果表明,对于具有大斜率的粗糙表面,模式匹配MoM模型给出的增强因子比SPM2小。还表明,即使对于指数相关函数的非常粗糙的情况,MoM也可以给出精确的解决方案。波导几何中的粗糙表面模拟的MoM方法比FEM所需的计算资源少得多。

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