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基于传输聚焦超表面的高增益双极化微带天线。

High-Gain Dual-Polarization Microstrip Antenna Based on Transmission Focusing Metasurface.

作者信息

Sun Yibo, Cai Bin, Yang Lingling, Wu Ling, Cheng Yongzhi, Luo Hui, Chen Fu, Li Xiangcheng

机构信息

School of Information Science and Engineering, Engineering Research Center for Metallurgical Automation and Detecting Technology Ministry of Education, Wuhan University of Science and Technology, Wuhan 430081, China.

School of Electronic Engineering, Wuhan Open University, Wuhan 430205, China.

出版信息

Materials (Basel). 2024 Jul 27;17(15):3730. doi: 10.3390/ma17153730.

Abstract

In this paper, a single-feed microstrip antenna (MA) equipped with a transmission-mode focusing metasurface (MS) is proposed to achieve dual-polarization capabilities and superior high-gain radiation performance. The original-feed MA comprises two distinct layers of coaxial-fed tangential patches, enabling it to emit a circular polarization (CP) wave with a gain of 3.5 dBic at 5.6 GHz and linear polarization (LP) radiation with a gain of 4 dBi at 13.7 GHz. To improve the performance of the single-feed MA, a dual-polarization transmission focusing MS is proposed and numerically substantiated. By positioning the originally designed MA at the focal point of the MS, we create a transmission-mode MS antenna system capable of achieving CP and LP radiations with the significantly higher gains of 12.9 dBic and 14.8 dBi at 5.6 GHz and 13.7 GHz, respectively. Measurements conducted on the fabricated dual-polarization focusing MS antenna closely align with the simulation results, validating the effectiveness of our approach. This work underscores the significant potential of dual-polarization high-speed data systems and offers a practical solution for enhancing antenna gains in contemporary wireless communication systems.

摘要

本文提出了一种配备传输模式聚焦超表面(MS)的单馈微带天线(MA),以实现双极化能力和卓越的高增益辐射性能。原始馈电MA由两层不同的同轴馈电切向贴片组成,使其能够在5.6 GHz发射增益为3.5 dBic的圆极化(CP)波,并在13.7 GHz发射增益为4 dBi的线极化(LP)辐射。为了提高单馈MA的性能,提出了一种双极化传输聚焦MS并进行了数值验证。通过将最初设计的MA放置在MS的焦点处,我们创建了一个传输模式MS天线系统,该系统能够在5.6 GHz和13.7 GHz分别实现增益显著更高的CP和LP辐射,增益分别为12.9 dBic和14.8 dBi。对制造的双极化聚焦MS天线进行的测量与仿真结果紧密吻合,验证了我们方法的有效性。这项工作强调了双极化高速数据系统的巨大潜力,并为增强当代无线通信系统中的天线增益提供了一种实用解决方案。

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