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

Author:

Sun Yibo1,Cai Bin1,Yang Lingling2,Wu Ling3,Cheng Yongzhi14ORCID,Luo Hui14,Chen Fu14,Li Xiangcheng345ORCID

Affiliation:

1. 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

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

3. School of Physics and Electronic Information Engineering, Hubei Engineering University, Xiaogan 432000, China

4. Key Laboratory of High Temperature Electromagnetic Materials and Structure of MOE, Wuhan University of Science and Technology, Wuhan 430081, China

5. The State Key Laboratory of Refractories and Metallurgy, Wuhan University of Science and Technology, Wuhan 430081, China

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.

Funder

the National Natural Science Foundation of China

the Science Fund for Creative Research Groups of the National Natural Science Foundation of Hubei Province

the Key Research and Development Project of Hubei Province

the Major Project of Hubei Province

the Young Top-notch Talent Cultivation Program of Hubei Province

Publisher

MDPI AG

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