减少5G通信网络射频资源:一种空间调制驱动的方法

Jian Song, Longzhuang He, Jintao Wang
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摘要

多输入多输出(MIMO)技术已成为促进未来5G通信网络中数据流量快速增长的关键途径。然而,射频资源的高成本和低效率降低了MIMO的效益。虽然空间调制(SM)技术最近被提出用于减少传统小规模MIMO系统的射频资源,但尚不清楚未来的5G通信网络是否仍然包含SM的优势,传统MIMO面临许多不同的挑战。为了解决这一问题,本文讨论了SM在5G通信中的应用,我们建议将SM纳入i)大规模MIMO系统和ii)毫米波(mmWave) MIMO系统,以便在未来无线通信的能源效率和频谱效率之间取得更好的平衡。本文揭示了SM能够提高5G通信网络的传输数据速率,同时保持同等规模的RF资源占用,从而推动了SM在5G通信中的富有成效的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reducing RF resource for 5G communication networks: A spatial modulation motivated approach
Multiple-input multiple-output (MIMO) techniques have constituted a key approach to facilitate the rapid data traffic growth in future 5G communication networks. However, the high cost and low efficiency nature of radio frequency (RF) resource has unfortunately reduced the benefit of MIMO. While spatial modulation (SM) technique has recently been proposed to reduce the RF resource for conventional small-scale MIMO systems, it is unclear if future 5G communication network, where conventional MIMOs encounter much different challenges, still embraces the benefits of SM. In order to address this issue, in this paper the application of SM in 5G communications is discussed, where we propose to incorporate SM into i) massive MIMO systems, and ii) millimeter wave (mmWave) MIMO systems, to strike a better tradeoff between energy efficiency and spectral efficiency for future wireless communications. It is revealed in this paper that SM is capable of improving the transmission data rates for 5G communication networks while maintaining an equal scale of RF resource occupancy, which therefore motivates the fruitful application of SM in 5G communications.
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