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Review of Recent Phased Arrays for Millimeter-Wave Wireless Communication

机译:毫米波无线通信的最新相控阵综述

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摘要

Owing to the rapid growth in wireless data traffic, millimeter-wave (mm-wave) communications have shown tremendous promise and are considered an attractive technique in fifth-generation (5G) wireless communication systems. However, to design robust communication systems, it is important to understand the channel dynamics with respect to space and time at these frequencies. Millimeter-wave signals are highly susceptible to blocking, and they have communication limitations owing to their poor signal attenuation compared with microwave signals. Therefore, by employing highly directional antennas, co-channel interference to or from other systems can be alleviated using line-of-sight (LOS) propagation. Because of the ability to shape, switch, or scan the propagating beam, phased arrays play an important role in advanced wireless communication systems. Beam-switching, beam-scanning, and multibeam arrays can be realized at mm-wave frequencies using analog or digital system architectures. This review article presents state-of-the-art phased arrays for mm-wave mobile terminals (MSs) and base stations (BSs), with an emphasis on beamforming arrays. We also discuss challenges and strategies used to address unfavorable path loss and blockage issues related to mm-wave applications, which sets future directions.
机译:由于无线数据流量的快速增长,毫米波(mm-wave)通信已显示出巨大的前景,并被认为是第五代(5G)无线通信系统中的一种有吸引力的技术。但是,对于设计健壮的通信系统,重要的是要了解这些频率下有关空间和时间的信道动态。毫米波信号极易受到阻塞,并且由于与微波信号相比信号衰减较弱,因此它们具有通信限制。因此,通过使用高度定向的天线,可以使用视线(LOS)传播来减轻与其他系统之间的同信道干扰。由于具有成形,切换或扫描传播光束的能力,相控阵在先进的无线通信系统中起着重要的作用。使用模拟或数字系统架构,可以在毫米波频率上实现光束切换,光束扫描和多光束阵列。这篇评论文章介绍了毫米波移动终端(MS)和基站(BS)的最新相控阵,重点是波束成形阵列。我们还将讨论用于解决与毫米波应用相关的不利路径损耗和阻塞问题的挑战和策略,这为未来发展指明了方向。

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