面向5g的贴片天线设计,全面调研

Marco Mongi, Jonathan Giacri, Ezequiel Tardivo, Noelia Veglia, Federico Aguirre
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引用次数: 0

摘要

随着5G的到来,需要更高的速度、更多的连接用户和更低的延迟。为了实现这一目标,需要与5G技术兼容的新型天线。贴片天线由耐用且廉价的材料制成,易于批量生产且外形低调,是5G场景部署的可靠候选者。本文旨在为利用微带技术设计面向5G服务的天线提供全面指导。本文提出了一种自上而下的方法,首先解释一般概念,然后将研究方向定位于更具体的主题。讨论的主题是5G的基础技术,贴片天线,圆极化和阵列理论。每个主题都提供了对其基本原理的解释,其方法旨在全面而不是技术,并侧重于为面向5g的天线提供实际设计考虑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of 5G-oriented patch antennas, a comprehensive survey
With the advent of 5G, higher speeds, more connected users and lower latency are required. To accomplish such goals, new antennas compatible with 5G technology are necessary. Patch antennas, being made of resistant and cheap materials, easy to mass-produce and low profile, represent a solid candidate for deployment in a 5G scenario. This paper aims to serve as a comprehensive guide for designing an antenna using microstrip technology, oriented to provide 5G services. This paper proposes a top-down approach, explaining first the general concepts and orienting the study towards more specific subjects. The topics discussed are the underlying technologies of 5G, patch antennas, circular polarization and array theory. Each topic provides an explanation of its fundamental principles, with an approach intended to be comprehensive instead of technical, and focusing towards giving practical design considerations for a 5G-oriented antenna.
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