Channel capacity analysis of non-orthogonal multiple access and massive multiple-input multiple-output wireless communication networks considering perfect and imperfect channel state information

IF 1 Q3 ENGINEERING, MULTIDISCIPLINARY
Ravi Shankar, S. Nandi, A. Rupani
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引用次数: 6

Abstract

In this paper, we investigate the non-orthogonal multiple access (NOMA) and massive multiple-input multiple-output (M-MIMO) techniques and through simulation, and a comparison is given between the NOMA and orthogonal multiple access techniques. Integrating NOMA with M-MIMO is a very challenging task. In this paper, for a single-cell system, NOMA is integrated with a M-MIMO system for better spectral and energy efficiency. Investigation of the multiple user gain is the focus of this work because the multiple user gain supports simultaneous transmission of multiple users in the case of the M-MIMO system. In this way, the M-MIMO will provide a 100 times channel capacity increase, which results in very high data transmission rate. In the modern communication system, achieving multiple user gain is a very difficult task when channel estimation error is present. The performance of the orthogonal multiple access as well as NOMA system significantly reduced in the presence of channel estimation error. However, most of the current schemes do not work well with imperfect perfect channel state information conditions. Simulation results closely agree with the theoretical outcomes.
考虑信道状态信息完备与不完备的非正交多址海量多输入多输出无线通信网络信道容量分析
本文研究了非正交多址(NOMA)和大规模多输入多输出(M-MIMO)技术,并通过仿真对NOMA和正交多址技术进行了比较。NOMA与M-MIMO的集成是一项非常具有挑战性的任务。在本文中,对于单蜂窝系统,NOMA与M-MIMO系统集成,以获得更好的频谱和能量效率。多用户增益的研究是本研究的重点,因为在M-MIMO系统中,多用户增益支持多用户同时传输。这样,M-MIMO将提供100倍的信道容量,从而实现非常高的数据传输速率。在现代通信系统中,当信道估计存在误差时,实现多用户增益是一项非常困难的任务。在信道估计误差存在的情况下,正交多址和NOMA系统的性能显著降低。然而,目前大多数方案在不完美的信道状态信息条件下都不能很好地工作。仿真结果与理论结果吻合较好。
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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来源期刊
CiteScore
2.80
自引率
12.50%
发文量
40
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