On the Level Crossing Rate of Fluid Antenna Systems

Priyadarshi Mukherjee, C. Psomas, I. Krikidis
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引用次数: 11

Abstract

Multiple-input multiple-output (MIMO) technology has significantly impacted wireless communication, by providing extraordinary performance gains. However, a minimum inter-antenna space constraint in MIMO systems does not allow its integration in devices with limited space. In this context, the concept of fluid antenna systems (FASs) appears to be a potent solution, where there is no such restriction. In this paper, we investigate the average level crossing rate (LCR) of such FASs. Specifically, we derive closed-form analytical expressions of the LCR of such systems and extensive Monte-Carlo simulations validate the proposed analytical framework. Moreover, we also demonstrate that under certain conditions, the LCR obtained coincides with that of a conventional selection combining-based receiver. Finally, the numerical results also provide insights regarding the selection of appropriate parameters that enhance the system performance.
流体天线系统的平交速率研究
多输入多输出(MIMO)技术通过提供非凡的性能提升,对无线通信产生了重大影响。然而,在MIMO系统中,最小天线间空间限制不允许其集成在有限空间的设备中。在这种情况下,流体天线系统(FASs)的概念似乎是一个有效的解决方案,因为没有这种限制。本文研究了这类FASs的平均水平交叉率(LCR)。具体地说,我们推导了这种系统的LCR的封闭形式的解析表达式,并且广泛的蒙特卡罗模拟验证了所提出的分析框架。此外,我们还证明了在一定条件下,所获得的LCR与传统的基于选择组合的接收器的LCR一致。最后,数值结果也提供了有关选择适当的参数,提高系统性能的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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