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Segmentation strategy for the efficient analysis and design of substrate integrated waveguide directly coupled cavity filters

机译:用于有效分析和设计衬底集成波导直接耦合腔滤波器的分割策略

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摘要

In this study, a new segmentation strategy is presented for the full-wave analysis of directly coupled cavity filters in substrate integrated waveguide (SIW) technology. The whole SIW filter is enclosed inside an external fictitious rectangular waveguide, which does not affect the propagation inside the SIW assuming that the SIW is well designed and there is no significant power leakage. The external rectangular waveguide allows to easily segment the structure into building blocks that are composed of circular metallic vias inside a rectangular waveguide. The generalised scattering matrix of these building blocks is obtained with highly efficient techniques specifically suited for the analysis of H-plane rectangular waveguide devices. Some building blocks are repeated along the structure, and their scattering matrix has to be computed only once. The scattering matrices of all the building blocks are cascaded and the scattering matrix of the whole filter is obtained. A SIW filter of eight coupled cavities with a bandpass response centred at 11 GHz is analysed. Results from this analysis show that the computational time has been significantly reduced when compared with other specific SIW analysis methods or with commercial general purpose software, while maintaining a good accuracy.
机译:在这项研究中,提出了一种新的分割策略,用于对衬底集成波导(SIW)技术中直接耦合腔滤波器的全波分析。整个SIW滤波器都封装在外部虚拟矩形波导内,假设SIW设计合理且没有明显的功率泄漏,则不会影响SIW内部的传播。外部矩形波导可以轻松地将结构分割成由矩形波导内的圆形金属通孔组成的构建块。这些构件的广义散射矩阵是通过高效技术获得的,这些技术特别适合于分析H平面矩形波导器件。沿该结构重复一些构造块,并且它们的散射矩阵只需要计算一次。将所有构件的散射矩阵级联,得到整个滤波器的散射矩阵。分析了八个耦合腔的SIW滤波器,其带通响应以11 GHz为中心。该分析的结果表明,与其他特定的SIW分析方法或商业通用软件相比,计算时间已大大减少,同时保持了良好的准确性。

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