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Inclusion of Concentric Ring Split Structures in the Microwave Transmission Lines to Control their Conductive Properties

机译:在微波传输线中包含同心环分裂结构以控制其导电特性

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The purpose of the research carried out in this work was the development model of filtering band-barrier properties of conducting composite (meta-material) structures consisting of two concentric strip rings having cuts in diametrically opposite directions and possible combinations thereof in the form of several similar elements. Calculated and experimental studies were carried out on the example of the coplanar transmission line section in which these filtering structures are placed on the reverse side of the conducting section. As a result, it was revealed that the double split ring resonators are an effective strip-barrier composite structure for coplanar, strip line and the like transmission lines. All the results of the calculation and CAD modeling were experimentally tested on the mock-ups made (layouts). New practical possibilities were found for tuning the resonant frequency of these structures (in the range of about 50%) by rotating the proposed designs of mobile modules with split rings. They can be placed under the conductive line in a convenient place for installation. The methods of resonant frequency tuning and fine tuning of the bandwidth and the transmission factor are described in the configuration of working models [1]-[11].
机译:在这项工作中进行研究的目的是开发一种导电复合材料(超材料)结构的过滤带阻特性的开发模型,该复合材料结构由两个在直径上相反的方向切割的同心带状环组成,并且可能以多种形式组合相似的元素。在共面传输线部分的示例中进行了计算和实验研究,其中这些滤波结构位于导电部分的背面。结果,揭示了双裂环谐振器是用于共面的,带状线等的传输线的有效带状-壁垒复合结构。计算和CAD建模的所有结果均在制作的模型(布局)上进行了实验测试。通过旋转带有开口环的移动模块的建议设计,发现了用于调整这些结构的共振频率(在大约50%的范围内)的新的实际可能性。可以将它们放置在导线下方的方便安装位置。在工作模型[1]-[11]的配置中描述了谐振频率调谐以及带宽和传输因子的微调方法。

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