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一种用于低于6GHz 5G MIMO通信系统的具有高元件间隔离度的创新型天线阵列。

An innovative antenna array with high inter element isolation for sub-6 GHz 5G MIMO communication systems.

作者信息

Alibakhshikenari Mohammad, Virdee Bal S, Benetatos Harry, Ali Esraa Mousa, Soruri Mohammad, Dalarsson Mariana, Naser-Moghadasi Mohammad, See Chan Hwang, Pietrenko-Dabrowska Anna, Koziel Slawomir, Szczepanski Stanislaw, Limiti Ernesto

机构信息

Department of Signal Theory and Communications, Universidad Carlos III de Madrid, 28911, Leganés, Madrid, Spain.

School of Computing and Digital Media, Center for Communications Technology, London Metropolitan University, London, N7 8DB, UK.

出版信息

Sci Rep. 2022 May 12;12(1):7907. doi: 10.1038/s41598-022-12119-2.

Abstract

A novel technique is shown to improve the isolation between radiators in antenna arrays. The proposed technique suppresses the surface-wave propagation and reduces substrate loss thereby enhancing the overall performance of the array. This is achieved without affecting the antenna's footprint. The proposed approach is demonstrated on a four-element array for 5G MIMO applications. Each radiating element in the array is constituted from a 3 × 3 matrix of interconnected resonant elements. The technique involves (1) incorporating matching stubs within the resonant elements, (2) framing each of the four-radiating elements inside a dot-wall, and (3) defecting the ground plane with dielectric slots that are aligned under the dot-walls. Results show that with the proposed approach the impedance bandwidth of the array is increased by 58.82% and the improvement in the average isolation between antennas #1&2, #1&3, #1&4 are 8 dB, 14 dB, 16 dB, and 13 dB, respectively. Moreover, improvement in the antenna gain is 4.2% and the total radiation efficiency is 23.53%. These results confirm the efficacy of the technique. The agreement between the simulated and measured results is excellent. Furthermore, the manufacture of the antenna array using the proposed approach is relatively straightforward and cost effective.

摘要

一种新颖的技术被证明可以改善天线阵列中辐射器之间的隔离度。所提出的技术抑制了表面波传播并降低了基板损耗,从而提高了阵列的整体性能。这一目标的实现并未影响天线的占用空间。所提出的方法在用于5G MIMO应用的四元阵列上得到了验证。阵列中的每个辐射元件由一个3×3的相互连接的谐振元件矩阵构成。该技术包括:(1)在谐振元件内并入匹配短截线;(2)在点壁内框住四个辐射元件中的每一个;(3)在点壁下方对齐的位置用介质槽使接地平面产生缺陷。结果表明,采用所提出的方法,阵列的阻抗带宽增加了58.82%,天线1与2、1与3、1与4之间平均隔离度的改善分别为8dB、14dB、16dB和13dB。此外,天线增益提高了4.2%,总辐射效率为23.53%。这些结果证实了该技术的有效性。模拟结果与测量结果之间的一致性非常好。此外,使用所提出的方法制造天线阵列相对简单且具有成本效益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61ae/9098627/f6d45730a78a/41598_2022_12119_Fig1_HTML.jpg

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