Design of a novel compact low specific absorption rate multiple input multiple output antenna for 5G sub-6 GHz terminals

A. Ennajih, A. Sardi, Y. Mouzouna, Mohamed Sadik, A. Errkik
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Abstract

This investigation presents a new design and analysis of a fourteen elements massive multiple input multiple output (MIMO) compact low specific absorption rate (SAR) antenna system for 5G and beyond terminals. The MIMO antennas are realized for sub-6 GHz LTE-band 46 (5.1-5.8 GHz) long-term evolution 5G wireless communication services. The proposed antenna system is designed on an FR-4 dielectric constant 4.3 substrate consisting of the main board and four sideboards. The radiating elements are developed on the sideboards consisting of a monopole antenna and two metamaterial unit cells, as well as the feed line is designed on the principal board. The overall volume of the proposed structure is 150×80×7.5 mm. Through the use of the metamaterial unit cells, the proposed antennas have been arranged in close proximity without developing a strong mutual coupling. The results obtained were very important in terms of impedance matching, isolation among the antennas, and good gain. Even, the SAR analysis at the operating frequency band of 5.5 GHz proves that the proposed MIMO antenna system satisfies safety standards set for human exposure at the international level. Therefore, the proposed massive MIMO antenna structure is a potential solution for future communication applications.
为 6 千兆赫以下 5G 终端设计新型紧凑型低比吸收率多输入多输出天线
本研究介绍了一种用于 5G 及更高终端的 14 元大规模多输入多输出(MIMO)紧凑型低比吸收率(SAR)天线系统的新设计和分析。MIMO 天线适用于 6 GHz 以下 LTE 频段 46(5.1-5.8 GHz)的长期演进 5G 无线通信服务。拟议的天线系统是在介电常数为 4.3 的 FR-4 基板上设计的,由主板和四个侧板组成。辐射元件在侧板上开发,包括一个单极子天线和两个超材料单元单元,馈线则设计在主板上。拟议结构的总体积为 150×80×7.5 毫米。通过超材料单元的使用,所提议的天线被紧密地排列在一起,而不会产生强烈的相互耦合。所获得的结果在阻抗匹配、天线间隔离和良好增益方面都非常重要。此外,在 5.5 GHz 工作频段进行的 SAR 分析表明,所提出的 MIMO 天线系统符合国际人体暴露安全标准。因此,所提出的大规模多输入多输出天线结构是未来通信应用的一个潜在解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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