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On the Performance of Visible Light Communication Systems With Non-Orthogonal Multiple Access

机译:非正交多址可见光通信系统的性能研究

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摘要

Visible light communication (VLC) has been proposed as a promising and efficient solution to indoor ubiquitous broadband connectivity. In this paper, non-orthogonal multiple access, which has been recently introduced as an effective scheme for fifth generation (5G) wireless networks, is considered in the context of VLC systems under different channel uncertainty models. To this end, we first derive a novel closed-form expression for the bit-error-rate (BER) under perfect channel state information (CSI). Capitalizing on this, we then quantify the effect of noisy and outdated CSI by deriving a simple and accurate approximation for the former and a tight upper bound for the latter. The offered results are corroborated by respective results from extensive Monte Carlo simulations and assist in developing useful insights on the effect of imperfect CSI knowledge on the overall system performance. Furthermore, it was shown that while noisy CSI leads to slight degradation in the BER performance, outdated CSI can cause considerable performance degradation, if the order of the users’ channel gains change due to the involved mobility.
机译:可见光通信(VLC)已被提出作为室内无处不在的宽带连接的一种有前途和有效的解决方案。本文在不同信道不确定性模型下的VLC系统中考虑了非正交多址技术,该技术最近已被引入作为第五代(5G)无线网络的有效方案。为此,我们首先针对理想信道状态信息(CSI)下的误码率(BER)得出一种新颖的闭式表达式。利用这一点,我们通过得出前者的简单准确的近似值和后者的严格上限,来量化嘈杂和过时的CSI的影响。广泛的蒙特卡洛模拟所提供的结果证实了所提供的结果,并有助于就不完善的CSI知识对整体系统性能的影响开发有用的见解。此外,研究表明,虽然嘈杂的CSI会导致BER性能略有下降,但如果用户的信道增益顺序因所涉及的移动性而发生变化,则过时的CSI会导致性能显着下降。

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