面向移动应用的高性能 5G 毫米波 MIMO 天线阵列的设计与仿真

Hrittik Raj Barua, I. A. Chowdhury
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摘要

本文介绍了针对 5G 毫米波(mm-wave)移动应用的高效多输入多输出(MIMO)天线阵列的设计与仿真。采用的基板介电常数为 2.2,损耗正切为 0.0009,厚度为 0.254 毫米的罗杰斯 RT5880。拟议的多输入多输出天线阵列覆盖了为 5G 毫米波移动应用预留的 37 GHz 频谱。单个天线元件的增益为 6.44 dBi,双天线元件阵列配置的增益为 7.89 dBi,四天线元件阵列配置的增益为 10.88 dBi。拟议的多输入多输出天线阵列性能指标,包括反射系数、驻波比、辐射效率和增益,均低于公认的阈值。在所需的工作频段内,建议的 MIMO 天线阵列的辐射效率达到了 85% 以上。根据仿真结果,所提出的设计可能适用于 5G 网络中使用毫米波的移动应用。
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Design and Simulation of a High Performance 5G mm-Wave MIMO Antenna Array for Mobile Applications
This paper presents the design and simulation of an efficient multiple input multiple output (MIMO) antenna array for 5G millimeter-wave (mm-wave) mobile applications. With a dielectric constant of 2.2 and a loss tangent of 0.0009, the substrate employed is a Rogers RT5880 that is 0.254 mm thick. The 37 GHz frequency spectrum, reserved for millimeter-wave mobile applications for 5G, is covered by the proposed MIMO antenna arrays. The single antenna element has a gain of 6.44 dBi, which is increased to 7.89 dBi with a two-element array configuration and 10.88 dBi with a four-element array configuration. The proposed MIMO antenna array performance metrics—including reflection coefficient, VSWR, radiation efficiency, and gain—are seen and discovered to be below the accepted threshold. In the desired operating frequency band, it is noticed that more than 85% of the proposed MIMO antenna array's radiation efficiency is achieved. According to simulation findings, the proposed design may be potentially feasible for mobile applications using millimeter waves in the 5G network.
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