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首页> 外文期刊>International journal of RF and microwave computer-aided engineering >Isolation enhancement of 5G multiple-input multiple-output microstrip patch antenna using metamaterials and the theory of characteristic modes
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Isolation enhancement of 5G multiple-input multiple-output microstrip patch antenna using metamaterials and the theory of characteristic modes

机译:使用超材料和特征模式理论的5G多输入多输出微带贴片天线隔离增强

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摘要

This paper presents a compact 5G multiple-input multiple-output (MIMO) microstrip antenna with isolation enhancement based on a slotted complementary split-ring resonator (SCSRR) and the theory of characteristic modes (TCMs). The metamaterial unit consists of three CSRR connected by extra slots. These added slots improve significantly the rejection response in terms of bandwidth and suppression. The dispersion diagram analysis is introduced to show the filtering characteristics of the band-gap structure before and after adding these additional slots. The TCM is employed to investigate the behavior of this 5G MIMO antenna before and after adding the slotted CSRR. The TCM is also applied to the MIMO antenna system to build up a precise methodology that can foresee whether the isolation can be upgraded further or not. The slotted CSRR is inserted meticulously in specific locations to block the coupling modes and almost does not affect the results of the noncoupling modes to improve the isolation remarkably. With this slotted CSRR, a 27-dB reduction in the mutual coupling between the two patch antennas is achieved. The whole design has been simulated utilizing the Microwave Studio CST ver. 18 simulator. The antenna being proposed is highly efficient and suitable for 5G wireless communication.
机译:本文介绍了一个紧凑的5G多输入多输出(MIMO)微带天线,基于开槽互补分体环谐振器(SCSRR)和特征模式(TCMS)的隔离增强。超材料单元由三个CSRR通过额外插槽组成。这些增加的槽在带宽和抑制方面的拒绝响应显着提高。引入分散图分析以显示在添加这些附加槽之前和之后的带间隙结构的滤波特性。在添加开槽CSRR之前和之后,使用TCM来研究该5G MIMO天线的行为。 TCM还应用于MIMO天线系统,以建立一种精确的方法,可以预见可以进一步升级隔离。开槽CSRR在特定位置季节性地插入以阻止耦合模式,并且几乎不会影响非耦合模式的结果,以显着提高隔离。利用该开槽CSRR,实现了两个贴片天线之间的相互耦合的27-dB减小。整个设计已经利用微波演播室CST Ver模拟。 18模拟器。所提出的天线高效,适用于5G无线通信。

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