相控阵与MIMO:用于MIMO的液晶聚合物的宽带5G端火元件

Rajveer S. Brar, R. Vaughan, Mark Felipe
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引用次数: 5

摘要

本文在相控阵研讨会上提出了一种移动通信用的多端口天线,它由两部分组成。首先,我们回顾了相控阵天线作为一种通用阵列和多元天线(MEAs)在移动通信中普遍存在的背景。相控阵与mea在基本的阵列原理上有重叠之处,但设计方法和典型应用不同。我们将对这些差异进行回顾,以帮助修正有关术语的想法。第二部分介绍了一种用于第五代(5G)移动通信的新型阵列天线。它的元素是宽带设计,用于从金属平台或底盘边缘发射末火辐射。每个元件包括一对平行配置的不同尺寸的偶极子,以实现宽带阻抗带宽。导电偶极子由液晶聚合物(LCP)介质支撑。这在毫米波频率下具有相对较低的介电损耗,导致天线辐射效率在63%的相对带宽上超过90%。频率范围从22.8 GHz到44 GHz,涵盖了最近发布的5G频段24、28和38 GHz。元素坐在一个矩形底盘的边缘,并指示远离这些边缘。端射增益大于6dbi。由于底盘的电气尺寸足够大,元件之间的间隔很好,这意味着基本设计中的相互耦合非常低,但可以使用去耦配置进一步降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phased Arrays and MIMO: Wideband 5G End Fire Elements on Liquid Crystal Polymer for MIMO
This paper presents a multiport antenna for mobile communications at a symposium on phased arrays, and consequently it has two parts. Firstly, we review the context of the phased array antenna as a general array and multi-element antennas (MEAs) which are prevalent in mobile communications. There is overlap between phased arrays and MEAs in terms of the basic array principle, but the design approaches and typical applications are different. These differences are reviewed to help fix ideas about the terminology. The second part presents a new array antenna for fifth generation (5G) mobile communications. Its elements are wideband designs for end-fire radiation from the edge of a metallic platform, or chassis. Each element comprises a pair of different sized dipoles in a parallel configuration in order to achieve a wideband impedance bandwidth. The conducting dipoles are supported by a dielectric, which is Liquid Crystal Polymer (LCP). This has relatively low dielectric losses at millimeter-wave frequencies, resulting in an antenna radiation efficiency of more than 90% across a 63 % relative bandwidth. The frequency is from 22.8 GHz to 44 GHz which covers the recently- released 5G bands at 24, 28 and 38 GHz. The elements sit on the edges of a rectangular chassis and are directive away from these edges. The end-fire gains are more than 6 dBi. The elements are well-spaced because the electrical size of the chassis is sufficiently large, meaning that the mutual coupling within the basic design is very low, but can be even further decreased using decoupling configurations.
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