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The Capacity Gain of Orbital Angular Momentum Based Multiple-Input-Multiple-Output System

机译:基于轨道角动量的多输入多输出系统的容量增益

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摘要

Wireless communication using electromagnetic wave carrying orbital angular momentum (OAM) has attracted increasing interest in recent years, and its potential to increase channel capacity has been explored widely. In this paper, we compare the technique of using uniform linear array consist of circular traveling-wave OAM antennas for multiplexing with the conventional multiple-in-multiple-out (MIMO) communication method, and numerical results show that the OAM based MIMO system can increase channel capacity while communication distance is long enough. An equivalent model is proposed to illustrate that the OAM multiplexing system is equivalent to a conventional MIMO system with a larger element spacing, which means OAM waves could decrease the spatial correlation of MIMO channel. In addition, the effects of some system parameters, such as OAM state interval and element spacing, on the capacity advantage of OAM based MIMO are also investigated. Our results reveal that OAM waves are complementary with MIMO method. OAM waves multiplexing is suitable for long-distance line-of-sight (LoS) communications or communications in open area where the multi-path effect is weak and can be used in massive MIMO systems as well.
机译:近年来,使用电磁波携带轨道角动量(OAM)的无线通信引起了越来越多的兴趣,并且已经广泛探索了其增加信道容量的潜力。在本文中,我们将使用圆形行波OAM天线组成的均匀线性阵列与常规的多进多出(MIMO)通信方法进行复用的技术进行了比较,数值结果表明基于OAM的MIMO系统可以在通信距离足够长的情况下增加信道容量。提出了一个等效模型来说明OAM复用系统等效于具有较大元素间隔的常规MIMO系统,这意味着OAM波可以降低MIMO信道的空间相关性。此外,还研究了一些系统参数(如OAM状态间隔和元素间隔)对基于OAM的MIMO的容量优势的影响。我们的结果表明,OAM波与MIMO方法是互补的。 OAM波多路复用适用于长距离视线(LoS)通信或多径效应较弱的开放区域中的通信,也可用于大规模MIMO系统。

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