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用于5G设备的高性能八端口双频段MIMO天线系统

High Performance Eight-Port Dual-Band MIMO Antenna System for 5G Devices.

作者信息

Kiani Saad Hassan, Khan Muhammad Abbas, Rafique Umair, Marey Mohamed, Alharbi Abdullah G, Mostafa Hala, Khan Muhammad Amir, Abbas Syed Muzahir

机构信息

Department of Electrical Engineering, IIC University of Technology, Phnom Penh 121206, Cambodia.

Smart Systems Engineering Laboratory, College of Engineering, Prince Sultan University, Riyadh 11586, Saudi Arabia.

出版信息

Micromachines (Basel). 2022 Jun 17;13(6):959. doi: 10.3390/mi13060959.

Abstract

This study provides an eight-component multiple-input multiple-output (MIMO) antenna architecture for fifth-generation (5G) mobile communication systems. The single antenna element is comprised of an L-shaped radiating component, an L-shaped parasitic element, and a ground plane with a rectangular slot. The main element with a slot-loaded ground plane helps to draw current from a coaxial feed from the other side of the board, while the parasitic element helps to elongate the current path and improve the impedance of the system. This enables the system to radiate at two different frequency ranges: 3.34-3.7 GHz and 4.67-5.08 GHz, with 360 MHz and 410 MHz bandwidths, respectively. For MIMO configuration, the radiating elements are designed on either side of a 0.8 mm thick FR-4 substrate, allowing space to accommodate a battery, radio frequency (RF) systems and subsystems, and camera and sensor modules. The corner and the middle elements are arranged in such a manner so that they can provide spatial and pattern diversity. Furthermore, at least 12 dB of isolation is established between any two radiating elements. Various MIMO performance parameters were evaluated, e.g., mean effective gain (MEG), channel capacity (CC), envelope correlation coefficient (ECC), realized gain, far-field characteristics, and efficiency. Single- and double-hand mode evaluations were performed to further demonstrate the capability of the proposed MIMO antenna. A prototype of the proposed MIMO antenna was manufactured and assessed to verify the simulated data. The measured and simulated results were found to be in good agreement. On the basis of its performance characteristics, the designed MIMO system could be used in 5G communication systems.

摘要

本研究为第五代(5G)移动通信系统提供了一种八组件多输入多输出(MIMO)天线架构。单个天线元件由一个L形辐射组件、一个L形寄生元件和一个带有矩形缝隙的接地平面组成。带有缝隙加载接地平面的主元件有助于从电路板另一侧的同轴馈源汲取电流,而寄生元件有助于延长电流路径并改善系统阻抗。这使得系统能够在两个不同的频率范围辐射:3.34 - 3.7 GHz和4.67 - 5.08 GHz,带宽分别为360 MHz和410 MHz。对于MIMO配置,辐射元件设计在0.8 mm厚的FR - 4基板的两侧,以便留出空间容纳电池、射频(RF)系统和子系统以及摄像头和传感器模块。角落和中间元件以这样的方式排列,以便它们能够提供空间和方向图分集。此外,任意两个辐射元件之间建立了至少12 dB的隔离度。评估了各种MIMO性能参数;例如,平均有效增益(MEG)、信道容量(CC)、包络相关系数(ECC)、实现增益、远场特性和效率。进行了单手和双手模式评估,以进一步证明所提出的MIMO天线的能力。制造并评估了所提出的MIMO天线的原型,以验证模拟数据。测量结果和模拟结果吻合良好。基于其性能特性,所设计的MIMO系统可用于5G通信系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6fb1/9228682/fc0cdb895e41/micromachines-13-00959-g001.jpg

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