The Key Laboratory of Electronic Equipment Structure Design, Ministry of Education, Xidian University, Xi'an 710071, China.
Sensors (Basel). 2022 Dec 10;22(24):9681. doi: 10.3390/s22249681.
Recently, micro base station antennas have begun to play a more important role in 5G wireless communication, with the rapid development of modern smart medical care, the Internet of things, and portable electronic devices. Meanwhile, in response to the global commitment to long-term carbon neutrality, graphene film has received significant attention in the field of antennas due to its low carbon environmental impact and high electrical conductivity properties. In this work, a conformal array antenna based on highly conductive graphene films (CGF) is proposed for 5G millimeter-wave (MMW) applications. The proposed antenna consists of three antenna arrays, with eight patch elements in each array, operating at 24 GHz, with linear polarization. Each antenna array's current amplitude distribution coefficient is constructed by synthesizing a series-feeding linear array using the Chebyshev method. The measurement results demonstrated that the proposed CGF antenna exhibits a peak realized gain higher than 8 dBi in the bandwidth of 23.0-24.7 GHz. The proposed antenna achieves three independent beams from bore-sight to ±37° in conformal installations, with a cylinder radius of 30 mm, showing excellent beam-pointing performance. These characteristics indicate that the CGF can be used for the design of MMW micro base station antennas, fulfilling the requirements of the conformal carrier platform for a lightweight and compact antenna.
近年来,随着现代智能医疗、物联网和便携式电子设备的快速发展,微基站天线开始在 5G 无线通信中发挥更为重要的作用。同时,为响应全球对长期碳中和的承诺,由于石墨烯薄膜具有低碳环保和高导电性的特性,它在天线领域受到了广泛关注。在这项工作中,提出了一种基于高导电性石墨烯薄膜(CGF)的共形阵列天线,用于 5G 毫米波(MMW)应用。所提出的天线由三个天线阵列组成,每个阵列有八个贴片元件,工作在 24GHz,采用线极化。每个天线阵列的电流幅度分布系数通过使用切比雪夫方法合成一系列馈电线阵来构建。测量结果表明,所提出的 CGF 天线在 23.0-24.7GHz 的带宽内表现出高于 8dBi 的峰值实现增益。所提出的天线在共形安装时可从视轴实现±37°的三独立波束,圆柱半径为 30mm,具有出色的波束指向性能。这些特性表明 CGF 可用于设计 MMW 微基站天线,满足轻量级和紧凑天线对共形载体平台的要求。