李小龙式流体天线系统:六大研究课题及6G发展潜力

Kai‐Kit Wong, K. Tong, Yuanjun Shen, Yu Chen, Yangyang Zhang
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引用次数: 23

摘要

虽然5G的任务是在未来10年改善我们的生活,但下一代移动通信,即6G,无疑将要求更高的能量和频谱效率,能够为用户提供无数的新服务和体验。虽然我们的技术确实从一代发展到下一代,但移动通信的根本目标始终是确保在不确定、波动的介质中实现可靠的性能。前几代人已经看到了许多技术,如先进的编码和信号处理,资源分配,以及最著名的多输入多输出,以从无线媒体中获得一些稳定性。不可避免的是,6G将建立在进一步颠覆性技术的基础上,从而实现另一个革命周期。在本文中,我们研究了一种新兴技术,称为流体天线系统,它代表了任何软件可控的流体、导电或介电结构,可以改变其形状和位置,以重新配置增益、辐射方向图、工作频率和其他特性。流体天线的灵感来自李小龙的截拳道创新移动通信系统的设计。在李小龙的哲学中,人们可以模仿水来适应战斗风格,而流体天线利用流体的动态特性或可切换像素来实现多样性和多路复用的终极灵活性,这在移动设备中是前所未有的,其含义可能是变革性的。本文讨论了6G流体天线系统的潜力,特别介绍了流体天线系统的六个研究课题,如果成功解决,将彻底改变移动通信网络的设计和优化。本文旨在激发有助于塑造6G技术发展的讨论。
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Bruce Lee-Inspired Fluid Antenna System: Six Research Topics and the Potentials for 6G
While 5G is tasked to transform our lives for the better over the next 10 years, next-generation mobile communications, a.k.a. 6G, will undoubtedly demand even higher energy and spectral efficiencies capable of providing myriads of new services and experience to users everywhere they go. Although our technologies do evolve from one generation to the next, the root of the ambition in mobile communications has always been to ensure reliable performance from an uncertain, fluctuating medium. The previous generations have already seen numerous technologies such as advanced coding and signal processing, resource allocation, and most famously, multiple-input multiple-output to redeem some stability from the wireless medium. Inevitably, 6G will be built upon further disruptive technologies that enable another cycle of revolution. In this article, we examine one emerging technology, referred to as fluid antenna system that represents any software-controllable fluidic, conductive, or dielectric structure that can alter its shape and position to reconfigure the gain, radiation pattern, operating frequency, and other characteristics. Fluid antenna takes inspiration from Bruce Lee's Jeet Kune Do to innovate mobile communication systems design. In Bruce Lee's philosophy, one can imitate water to adapt combat style, whereas fluid antenna exploits the dynamic nature of fluids or switchable pixels to achieve ultimate flexibility for diversity and multiplexing benefits that have been unseen before in mobile devices, and the implication can be transformative. This article discusses the potential of fluid antenna systems for 6G, and in particular, we introduce six research topics in fluid antenna systems that if solved successfully could revolutionize mobile communications network design and optimization. This article intends to stimulate discussion that will help shape the development of 6G technologies.
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