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用于5G应用的小型化3D可重构共面波导左手传输线印刷自供电多输入多输出天线阵列的光学远程控制

Optically Remote Control of Miniaturized 3D Reconfigurable CRLH Printed Self-Powered MIMO Antenna Array for 5G Applications.

作者信息

Al-Khaylani Hayder H, Elwi Taha A, Ibrahim Abdullahi A

机构信息

Electrical and Computer Engineering Department, Faculty of Engineering, Altinbas University, Istanbul 34217, Turkey.

Department of Communication Engineering, Al-Ma'moon University College, Baghdad 1004, Iraq.

出版信息

Micromachines (Basel). 2022 Nov 24;13(12):2061. doi: 10.3390/mi13122061.

Abstract

A novel design of a reconfigurable MIMO antenna array of a 3D geometry-based solar cell integration that is operating at sub-6 GHz for self-power applications in a 5G modern wireless communication network. The proposed antenna array provides three main frequency bands around 3.6 GHz, 3.9 GHz, and 4.9 GHz, with excellent matching impedance of S ≤ -10 dB. The proposed MIMO array is constructed from four antenna elements arranged on a cubical structure to provide a low mutual coupling, below -20 dB, over all frequency bands of interest. Each antenna element is excited with a coplanar waveguide (CPW). The proposed radiation patterns are controlled with two optical switches of Light Dependent Resistors (LDRs). The proposed antenna array is fabricated and tested experimentally in terms of S-parameters, gain and radiation patterns. The maximum gain is found to be 3.6 dBi, 6.9 dBi, and 3.5 dBi at 3.6 GHz, 3.9 GHz, and 4.9 GHz, respectively. It is realized that the proposed array realizes a significant beam forming by splitting the antenna beam and changing the main lobe direction at 3.9 GHz after changing LDR switching statuses. Such an antenna array is found to be very applicable for femtocell wireless communication networks in the 5G systems.

摘要

一种基于3D几何结构太阳能电池集成的可重构MIMO天线阵列的新颖设计,该天线阵列工作在低于6GHz频段,用于5G现代无线通信网络中的自供电应用。所提出的天线阵列在3.6GHz、3.9GHz和4.9GHz附近提供三个主要频段,具有S≤ -10dB的优异匹配阻抗。所提出的MIMO阵列由四个天线元件构成,这些元件排列在一个立方体结构上,以在所有感兴趣的频段上提供低于-20dB的低互耦。每个天线元件由共面波导(CPW)激励。所提出的辐射方向图由两个光敏电阻(LDR)光开关控制。所提出的天线阵列按照S参数、增益和辐射方向图进行了制造和实验测试。在3.6GHz、3.9GHz和4.9GHz时,最大增益分别为3.6dBi、6.9dBi和3.5dBi。可以认识到,在所提出的阵列中,在改变LDR开关状态后,通过在3.9GHz处分裂天线波束并改变主瓣方向,实现了显著的波束形成。发现这样的天线阵列非常适用于5G系统中的毫微微蜂窝无线通信网络。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9dfa/9784174/894746467714/micromachines-13-02061-g001.jpg

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