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Anomalous Dispersion Characteristics of Periodic Substrate Integrated Waveguides From Microwave to Terahertz

机译:周期基片集成波导从微波到太赫兹的色散特性

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摘要

This paper presents the anomalous dispersion characteristic of a periodic substrate integrated waveguide (SIW) with results obtained by a rigorous formulation using the hybrid generalized scattering matrix (GSM) and finite-element method (FEM), showing two types of anomalous modal behaviors, namely: 1) surface wave leakage in connection to the near cutoff transverse resonance of a rectangular waveguide section alternating with either microstrip or parallel sections and 2) complex modes inside the lowest -like propagating zone. A rigorous limiting case study of the SIW via spacing approaching less than 10% of via diameter validated the proposed hybrid GSM/FEM formulation and enabled the detailed description of various types of modes, namely, propagating -like, a pair of complex modes, and above the stopband regimes, respectively. Convergence analysis and comparisons to the existing literature were carried out to validate the proposed method in addition to the limiting case study. Measured results of the CMOS prototypes validate the theoretical prediction from 325 to 450 GHz and confirm the accuracy of the proposed method.
机译:本文介绍了周期性基片集成波导(SIW)的异常色散特性,并通过使用混合广义散射矩阵(GSM)和有限元方法(FEM)的严格公式化获得了结果,显示了两种类型的异常模态行为,即:1)与矩形波导管截面的近截止横向共振有关的表面波泄漏,该矩形波导管截面与微带或平行截面交替出现; 2)最低波状传播区内的复模。对SIW通孔间距的严格限制案例研究接近通孔直径的不到10%,从而验证了所提出的GSM / FEM混合公式,并能够详细描述各种类型的模式,例如传播型,一对复杂模式以及分别高于阻带制度。进行了收敛性分析和与现有文献的比较,以验证该方法的有效性,并进行了有限的案例研究。 CMOS原型的测量结果验证了325至450 GHz的理论预测,并证实了所提方法的准确性。

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