Reconfigurable Reflectarray Antenna: Background, Classification and Configurable Mechanisms

IF 0.6 Q3 ENGINEERING, MULTIDISCIPLINARY
Siti Fatimah binti Harun, Mohd Fais bin Mansor, Norbahiah binti Misran
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引用次数: 0

Abstract

Reflectarray antennas have emerged as one of the most suitable choice for 5G network base station antennas due to their ability to combine the advantages of parabolic reflectors and phased array antennas. These antennas offer a lightweight structure, high gain, and low impedance mismatch losses. High gain and low loss are crucial factors in ensuring the antenna delivers low latency and high-quality 5G radio signals. The application of 5G technology becomes more practical and efficient with the capability to adjust the functionality of a single 5G antenna or enable reconfiguration. This reconfigurable technique simplifies the multi-antenna systems and significantly reduces costs, making it more practical and systematic. Furthermore, this reconfigurability is particularly beneficial for satellite applications, as it allows for the reconfiguration of the signal in the event of satellite movement on the space. This paper aims to discuss the historical development of reconfigurable reflectarray antennas, focusing on the innovations in each configurable mechanism. The paper further explores the classification of configurations employed by this antenna, encompassing frequency configuration, radiation pattern, polarization, and hybrid configurations that integrate multiple existing configuration classifications. Finally, the research paper provides a discussion of the most recent research and innovations in the configurable mechanisms of reflectarray antennas.
可重构反射阵列天线:背景、分类和可配置机制
反射阵列天线结合了抛物面反射器和相控阵天线的优点,已成为 5G 网络基站天线的最合适选择之一。这些天线结构轻巧、增益高、阻抗失配损耗低。高增益和低损耗是确保天线提供低延迟和高质量 5G 无线电信号的关键因素。通过调整单个 5G 天线的功能或实现重新配置,5G 技术的应用变得更加实用和高效。这种可重新配置技术简化了多天线系统,大大降低了成本,使其更加实用和系统化。此外,这种可重新配置性尤其有利于卫星应用,因为它允许在卫星在空间移动时重新配置信号。本文旨在讨论可重构反射阵列天线的历史发展,重点关注每种可配置机制的创新。论文进一步探讨了这种天线所采用的配置分类,包括频率配置、辐射模式、极化以及整合了多种现有配置分类的混合配置。最后,研究论文对反射阵列天线可配置机制的最新研究和创新进行了讨论。
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来源期刊
Jurnal Kejuruteraan
Jurnal Kejuruteraan ENGINEERING, MULTIDISCIPLINARY-
自引率
16.70%
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0
审稿时长
24 weeks
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