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用于未来移动手机的超宽带分集多输入多输出天线系统。

Ultra-Wideband Diversity MIMO Antenna System for Future Mobile Handsets.

机构信息

Faculty of Engineering and Informatics, University of Bradford, Bradford BD7 1DP, UK.

Bradford College, West Yorkshire, Bradford BD7 1AY, UK.

出版信息

Sensors (Basel). 2020 Apr 22;20(8):2371. doi: 10.3390/s20082371.

Abstract

A new ultra-wideband (UWB) multiple-input/multiple-output (MIMO) antenna system is proposed for future smartphones. The structure of the design comprises four identical pairs of compact microstrip-fed slot antennas with polarization diversity function that are placed symmetrically at different edge corners of the smartphone mainboard. Each antenna pair consists of an open-ended circular-ring slot radiator fed by two independently semi-arc-shaped microstrip-feeding lines exhibiting the polarization diversity characteristic. Therefore, in total, the proposed smartphone antenna design contains four horizontally-polarized and four vertically-polarized elements. The characteristics of the single-element dual-polarized UWB antenna and the proposed UWB-MIMO smartphone antenna are examined while using both experimental and simulated results. An impedance bandwidth of 2.5-10.2 GHz with 121% fractional bandwidth (FBW) is achieved for each element. However, for S ≤ -6 dB, this value is more than 130% (2.2-11 GHz). The proposed UWB-MIMO smartphone antenna system offers good isolation, dual-polarized function, full radiation coverage, and sufficient efficiency. Besides, the calculated diversity performances of the design in terms of the envelope correlation coefficient (ECC) and total active reflection coefficient (TARC) are very low over the entire operating band.

摘要

提出了一种用于未来智能手机的新型超宽带(UWB)多输入/多输出(MIMO)天线系统。该设计的结构由四对相同的紧凑微带馈电缝隙天线组成,具有极化分集功能,它们对称地放置在智能手机主板的不同边缘角落。每个天线对由一个开环圆形环缝隙辐射器组成,由两条独立的半弧形微带馈电线馈电,具有极化分集特性。因此,总共提出的智能手机天线设计包含四个水平极化和四个垂直极化元件。使用实验和模拟结果来检查单个元件双极化 UWB 天线和所提出的 UWB-MIMO 智能手机天线的特性。每个元件的阻抗带宽为 2.5-10.2GHz,带宽分数为 121%(FBW)。但是,对于 S ≤ -6dB,该值大于 130%(2.2-11GHz)。所提出的 UWB-MIMO 智能手机天线系统具有良好的隔离度、双极化功能、全辐射覆盖和足够的效率。此外,在整个工作频段内,设计的 envelope correlation coefficient (ECC) 和 total active reflection coefficient (TARC) 的分集性能非常低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a3d/7219344/b6da051f0c74/sensors-20-02371-g001.jpg

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