面向未来 5G/6G 网络的波束成形微带贴片天线阵列综述

IF 2 Q2 ENGINEERING, MECHANICAL Frontiers in Mechanical Engineering Pub Date : 2024-02-21 DOI:10.3389/fmech.2023.1288171
Muhammad Asfar Saeed, Augustine O. Nwajana
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引用次数: 0

摘要

随着全球多用户对高数据传输速率和高带宽需求的增加,技术已迈向下一代无线通信。无线通信技术的飞速发展催生了 5G 网络的出现,5G 网络有望大幅提高数据传输速率、降低延迟并增强连接性。研究人员认为,有五项基本技术可以实现 5G。波束成形就是其中之一,因为它在实现可靠和大容量通信方面发挥着至关重要的作用。这篇综述文章全面分析了用于通信系统的 5G 波束成形微带贴片天线阵列技术。文章深入概述了波束成形的基本概念和原理,包括模拟、混合和数字波束成形技术。论文探讨了每种方法的优缺点,并讨论了它们在 5G 应用中的适用性。深入探讨 5G 采用的各种波束成形技术,包括传统波束成形、大规模多输入多输出波束成形、混合波束成形和自适应波束成形。讨论包括每种技术的优缺点和性能权衡,以及它们在不同部署场景和应用中的适用性。对用于天线馈电的多种耦合器进行了讨论,包括用于 5G/6G 通信的波束成形智能天线中的混合耦合器、威尔金森功率分配器、分支线耦合器和管家矩阵。根据其优缺点和应用,对众多波束成形技术进行了比较。此外,还对设计波束成形器所使用的介质基板进行了审查。本文的研究成果为 5G 无线通信和天线设计领域的研究人员、学者和工程师提供了宝贵的资源,有助于为未来的 5G 网络开发和部署高效、稳健的波束成形解决方案。
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A review of beamforming microstrip patch antenna array for future 5G/6G networks
With the increase in demand for high data rates and high bandwidth because of multiple users all over the globe, the technology has moved toward the next-generation of wireless communication. This rapid advancement of wireless communication technologies has led to the emergence of 5G networks, which promise significantly higher data rates, lower latency, and enhanced connectivity. Researchers believe that five essential techniques can enable 5G. Beamforming is one of those essentials, as it plays a vital role in achieving reliable and high-capacity communication. This review article portrays a comprehensive analysis of the 5G beamformer Microstrip Patch Antenna array techniques for communication systems. The paper comprises of a deep overview of the fundamental concepts and principles of beamforming, including analog, hybrid, and digital beamforming techniques. It explores the advantages and disadvantages of each approach and discusses their suitability for 5G applications. An in-depth examination of various beamforming techniques employed in 5G, encompassing traditional beamforming, massive Multiple-Input-Multiple-Output beamforming, hybrid beamforming, and adaptive beamforming. The discussion encompasses the strengths, weaknesses, and performance trade-offs of each technique, along with their applicability in diverse deployment scenarios and applications. The review of multiple couplers that are used for the feeding of the antenna is discussed with included hybrid coupler, Wilkinson power divider, branch line coupler, and butler matrix in beamformer smart antenna for 5G/6G communications. Numerous beamforming techniques are compared based on their merits, demerits, and applications. Moreover, the dielectric substrate utilized to design the beamformer was also reviewed. The findings presented in this paper serve as a valuable resource for the researcher, scholars, and engineers working in the field of 5G wireless communications and antenna designing, facilitating the development and deployment of efficient and robust beamforming solutions for future 5G networks.
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来源期刊
Frontiers in Mechanical Engineering
Frontiers in Mechanical Engineering Engineering-Industrial and Manufacturing Engineering
CiteScore
4.40
自引率
0.00%
发文量
115
审稿时长
14 weeks
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