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Design of Efficient Microstrip Linear Antenna Array for 5G Communications Systems

机译:适用于5G通信系统的高效微带线形天线阵列设计

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This paper presents design of an efficient microstrip antenna array for 5G communication systems. The antenna operates at 28 GHz and it is formed of 16 elements of rectangular patches arranged in a linear configuration. The single element has gap-coupled feeder and the antenna is designed on low-loss Teflon based RT/duroid 5880 substrate with dielectric constant of 2.2 and substrate thickness of 0.381 mm. A defected ground structure (DGS) in the form of rectangular slots is employed in the array design to reduce the mutual coupling between adjacent elements. The antenna is simulated using CST microwave studio and the results show that the 16-element array has a 10-dB bandwidth greater than 2 GHz and a maximum gain of 17.4 dBi at 28.4 GHz. The performance of the proposed antenna satisfies the requirements of 5G communications systems in terms of high gain, high radiation efficiency and adequate bandwidth.
机译:本文介绍了一种适用于5G通信系统的高效微带天线阵列的设计。天线工作频率为28 GHz,由16个以线性配置排列的矩形贴片元件组成。单个元件具有间隙耦合馈线,并且天线基于介电常数为2.2且基板厚度为0.381 mm的低损耗基于Teflon的RT / duroid 5880基板设计。在阵列设计中采用了矩形槽形式的有缺陷的接地结构(DGS),以减少相邻元素之间的相互耦合。使用CST微波工作室对天线进行了仿真,结果表明,由16个元素组成的阵列的10 dB带宽大于2 GHz,在28.4 GHz时最大增益为17.4 dBi。拟议天线的性能在高增益,高辐射效率和足够的带宽方面可以满足5G通信系统的要求。

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