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首页> 外文期刊>AEU: Archiv fur Elektronik und Ubertragungstechnik: Electronic and Communication >Asymmetric transversal patch loaded microstrip line based 1-D periodic structure with flexible selection of stopband resonance
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Asymmetric transversal patch loaded microstrip line based 1-D periodic structure with flexible selection of stopband resonance

机译:非对称横向贴片加载的微带线的基于1-D周期结构,具有灵活的阻带共振选择

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摘要

A reactively loaded microstrip line based 1-D periodic structure is discussed. An off-centered via configuration is introduced to the conventional center-shorted square patch mushroom type electromagnetic bandgap (EBG) structures. In this work, a rectangular transversal patch is used to load a longitudinal microstrip line reactively. Reactive loading is varied by changing the via position away from the patch center while keeping all other structure parameters constant. This asymmetric loading causes the structure to exhibit EBG characteristics at much lower frequency with the same structure dimensions when compared to conventional centered via setup. Propagating modes are investigated using eigenmode dispersion analysis for different via positions. An equivalent circuit model of the proposed unit cell is developed. Transmission matrix (ABCD) based phase constant calculations for the circuit model agrees with the dispersion analysis results. Finally, experimental results confirm that the proposed asymmetric configuration allows the structure to lower the bandgap resonance by 28.6% with negligible impact on other performance attributes of the structure. Using the proposed configuration, compact filter structures can be designed where the stopband resonance can be flexibly placed in the band of interest within a wide frequency range, by optimizing the via position. (C) 2019 Elsevier GmbH. All rights reserved.
机译:讨论了基于反应性负载的微带线的1-D周期结构。将常用的通孔配置引入传统的中心短路贴片蘑菇型电磁带隙(EBG)结构。在这项工作中,使用矩形横向贴片来加载反应性的纵向微带线。通过将通孔的位置从贴片中心更换,同时保持所有其他结构参数恒定,通过将通孔位置改变为远离贴片中心来改变反应加载。该不对称负载使得与传统的通过设置相比,该结构在具有相同的结构尺寸的频率下表现出eBG特性。研究了使用特征模色散分析来研究传播模式,用于不同的通过位置。开发了所提出的单元电池的等效电路模型。电路模型的基于传输矩阵(ABCD)的相位常数计算与色散分析结果一致。最后,实验结果证实,所提出的不对称配置允许结构将带隙共振降低28.6%,对结构的其他性能属性的影响可忽略不计。使用所提出的配置,可以设计紧凑的滤波器结构,其中通过优化通孔位置,可以设计在宽频范围内的宽频率范围内的感兴趣频段中。 (c)2019年Elsevier GmbH。版权所有。

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