面向5G应用的毫米多层平面天线阵列隙腔研究

L. Khashan
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引用次数: 0

摘要

5G通信系统的需求是提供更高的数据速率和更大的容量。毫米波技术被认为是满足这些要求的最佳解决方案。5G天线需要具有适合商用蜂窝手机的小尺寸,提供所需容量的大带宽和对抗毫米波高衰减的高增益。本文对参考口径耦合四元多层平面阵列进行了优化,使其在ka波段工作。评估了天线层之间不同的间隙腔,以获得更好的性能和易于制造。制作了工作在28 GHz的低成本毫米5G天线,实现了7.1%的带宽,而原始设计的带宽为4.6%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of Gap Cavity in Millimeter Multilayer Planar Antenna Array for 5G Applications
The demand for 5G communication systems is to deliver high data rate and to provide larger capacity. Millimeter wave technology is considered to be the best solution for such requirements. 5G antennas are required to have a small size to fit into the commercial cellular handsets, large bandwidth to deliver the required capacity and high gain to combat the high attenuation of mm-waves. In this paper, a reference aperture-coupled four-element multilayer planar array is optimized for operation in the Ka-band. Different gap cavities between the antenna layers are assessed for better performance and ease of fabrication. A low cost millimeter 5G antenna operating at 28 GHz is fabricated and the achieved bandwidth is 7.1% as compared to the 4.6% in the original design.
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