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Substrate Integrated Waveguide Loaded by Complementary Split-Ring Resonators and Its Applications to Miniaturized Waveguide Filters

机译:互补开环谐振器加载的基片集成波导及其在小型波导滤波器中的应用

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摘要

A substrate integrated waveguide with square complementary split-ring resonators (CSRRs) etched on the waveguide surface is investigated in this paper. The proposed structures allow the implementation of a forward-wave passband propagating below the characteristic cutoff frequency of the waveguide. By changing the orientations of the CSRRs, which are incorporated in the waveguide surface and can be interpreted in terms of electric dipoles, varied passband characteristics are observed. A detailed explanation for the generation and variations of the passbands has been illuminated. The application of this waveguide and CSRR combination technique to the design of miniaturized waveguide bandpass filters characterized by transmission zeros is then illustrated. Filter design methodology is examined. These proposed filters exhibit high selectivity and compact size due to the employment of the subwavelength resonators and an evanescent-wave transmission. By slightly altering the configuration of the CSRRs, we find that the propagation of the ${rm TE}_{10}$ mode can be suppressed and filters with improved selectivity and stopband rejection can be obtained. To verify the presented concept, three different types of filters are fabricated based on the standard printed circuit board process. The measured results are in good agreement with the simulation.
机译:本文研究了在波导表面上刻有方形互补开口环谐振器(CSRR)的衬底集成波导。所提出的结构允许实现在波导的特征截止频率以下传播的前向波通带。通过改变CSRR的方向,该CSRR并入波导表面并可以用电偶极子来解释,从而观察到变化的通带特性。阐明了通带的产生和变化的详细说明。然后说明了这种波导和CSRR组合技术在以传输零为特征的小型化波导带通滤波器的设计中的应用。检查过滤器设计方法。这些提议的滤波器由于使用了亚波长谐振器和。逝波传输而表现出高的选择性和紧凑的尺寸。通过稍微改变CSRR的配置,我们发现可以抑制$ {rm TE} _ {10} $模式的传播,并且可以获得具有改进的选择性和阻带抑制性能的滤波器。为了验证所提出的概念,基于标准印刷电路板工艺制造了三种不同类型的滤波器。测量结果与仿真结果吻合良好。

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