Al-Hadeethi Saba T, Elwi Taha A, Ibrahim Abdullahi A
Electrical and Computer Engineering Department, Graduate School of Science, Altinbas University, Istanbul 34217, Turkey.
International Applied and Theoretical Research Center (IATRC), Baghdad 10001, Iraq.
Micromachines (Basel). 2023 Jan 3;14(1):131. doi: 10.3390/mi14010131.
A novel antenna structure is constructed from cascading multi-stage metamaterial (MTM) unit cells-based printed monopole antenna for 5G mobile communication networks. The proposed antenna is constructed from a printed conductive trace that fetches four MTM unit cells through four T-Resonators (TR) structures. Such a combination is introduced to enhance the antenna gain-bandwidth products at sub-6GHz bands after exiting the antenna with a coplanar waveguide (CPW) feed. The antenna circuitry is fabricated by etching a copper layer that is mounted on Taconic RF-43 substrate. Therefore, the proposed antenna occupies an effective area of 51 × 24 mm. The proposed antenna provides an acceptable matching impedance with S ≤ -10 dB at 3.7 GHz, 4.6 GHz, 5.2 GHz, and 5.9 GHz. The antenna radiation patterns are evaluated at the frequency bands of interest with a gain average of 9.1-11.6 dBi. Later, to control the antenna performance, four optical switches based on LDR resistors are applied to control the antenna gain at 5.85 GHz, which is found to vary from 2 dBi to 11.6 dBi after varying the value of the LDR resistance from 700 Ω to 0 Ω, in descending manner. It is found that the proposed antenna provides an acceptable bit error rate (BER) with varying the antenna gain in a very acceptable manner in comparison to the ideal performance. Finally, the proposed antenna is fabricated to be tested experimentally in in free space and in close to the human body for portable applications.
一种新颖的天线结构由基于级联多级超材料(MTM)单元的印刷单极天线构成,用于5G移动通信网络。所提出的天线由一条印刷导电迹线构成,该迹线通过四个T型谐振器(TR)结构连接四个MTM单元。引入这种组合是为了在通过共面波导(CPW)馈电离开天线后,提高天线在低于6GHz频段的增益带宽积。天线电路通过蚀刻安装在Taconic RF - 43基板上的铜层制成。因此,所提出的天线占用的有效面积为51×24毫米。所提出的天线在3.7GHz、4.6GHz、5.2GHz和5.9GHz频率下提供了S≤ - 10dB的可接受匹配阻抗。在感兴趣的频段评估天线辐射方向图,平均增益为9.1 - 11.6dBi。随后,为了控制天线性能,应用了四个基于光敏电阻的光开关来控制5.85GHz频率下的天线增益,当光敏电阻值从700Ω降至0Ω时,发现天线增益从2dBi变化到11.6dBi,呈下降趋势。结果发现,与理想性能相比,所提出的天线在以非常可接受的方式改变天线增益时,提供了可接受的误码率(BER)。最后,制造了所提出的天线,以便在自由空间和靠近人体的环境中进行便携式应用的实验测试。