论文标题
流体天线系统
Fluid Antenna Systems
论文作者
论文摘要
在过去的几十年中,多种天线技术以许多不同的形式出现,最著名的是多输入多出输出(MIMO),以改变无线通信,以获得非凡的多样性和多重增长。各种技术的种类是基于将许多天线放置在固定位置的,这决定了可实现的性能的基本限制。相比之下,本文设想了一种情况,即可以将天线的物理位置自由切换到固定长度线空间上的N位置之一,以以传统选择组合的方式拾取最强的信号。我们将该系统称为流体天线系统(FAS),以实现其可能的形状和位置的巨大灵活性。本文的目的是研究具有固定长度和n个任意相关的瑞利褪色渠道的单人体FAS系统的可实现性能。我们的贡献包括FAS中断概率的精确和近似闭合形式表达式。我们还为中断概率得出了上限,从中显示出一个任意较小的空间的单个安德纳fas,如果n足够大,任何任意小的空间都可以胜过l-antenna最大比率组合(MRC)系统。我们的分析还揭示了FAS所需的最小尺寸,以及n被认为足以使FAS超过MRC的大小。
Over the past decades, multiple antenna technologies have appeared in many different forms, most notably as multiple-input multiple-output (MIMO), to transform wireless communications for extraordinary diversity and multiplexing gains. The variety of technologies has been based on placing a number of antennas at fixed locations which dictates the fundamental limit on the achievable performance. By contrast, this paper envisages the scenario where the physical position of an antenna can be switched freely to one of the N positions over a fixed-length line space to pick up the strongest signal in the manner of traditional selection combining. We refer to this system as a fluid antenna system (FAS) for tremendous flexibility in its possible shape and position. The aim of this paper is to study the achievable performance of a single-antenna FAS system with a fixed length and N in arbitrarily correlated Rayleigh fading channels. Our contributions include exact and approximate closed-form expressions for the outage probability of FAS. We also derive an upper bound for the outage probability, from which it is shown that a single-antenna FAS given any arbitrarily small space can outperform an L-antenna maximum ratio combining (MRC) system if N is large enough. Our analysis also reveals the minimum required size of the FAS, and how large N is considered enough for the FAS to surpass MRC.