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Power Allocation of Non-Orthogonal Multiple Access Based on Dynamic User Priority for Indoor QoS-Guaranteed Visible Light Communication Networks

机译:基于动态用户优先级的室内QoS保证可见光通信网络的非正交多次访问的功率分配

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摘要

Non-orthogonal multiple access (NOMA) simultaneously provides multi-user access over the same frequency band or time period, which can significantly improve system throughput in visible light communication (VLC) networks. However, the different interference components of NOMA and the diversified user requirements in VLC are difficult to coordinate. To guarantee both throughput enhancement and quality of service (QoS) satisfaction, this paper presents a power allocation scheme based on dynamic user priority in indoor NOMA-VLC networks. We introduce fuzzy logic (FL) to flexibly analyse user priority and assign signal power using multi-dimensional user features. The experimental results show that our method achieves the best performance in terms of user fairness and satisfaction. In indoor VLC, which has small cells with a high user density, our method outperforms contrastive schemes in terms of the average user data rate (AUDR). Therefore, in comparisons between static and dynamic user priority, our study indicates the fairness advantages of FL for the dynamic evaluation of user priority. In comparisons between NOMA and orthogonal multiple access, our study reflects the AUDR advantages of non-orthogonal methods. Furthermore, in comparisons of user satisfaction, our method outperforms existing methods, indicating the achievement of the QoS guarantee.
机译:非正交多次访问(NOMA)同时在相同的频带或时间段内提供多用户访问,这可以显着提高可见光通信(VLC)网络中的系统吞吐量。然而,NOMA的不同干扰分量和VLC中的多元化用户要求难以协调。为了保证吞吐量增强和服务质量(QoS)满意度,本文介绍了基于室内NOMA-VLC网络的动态用户优先级的功率分配方案。我们介绍模糊逻辑(FL),以灵活地分析用户优先级,并使用多维用户特征分配信号电源。实验结果表明,我们的方法在用户公平和满足方面实现了最佳性能。在室内VLC中,具有高用户密度的小电池,我们的方法在平均用户数据速率(AUDR)方面优于对比度方案。因此,在静态和动态用户优先之间的比较中,我们的研究表明了FL对用户优先级的动态评估的公平优势。在NOMA和正交多次访问之间的比较中,我们的研究反映了非正交方法的AUDR优势。此外,在用户满意度的比较中,我们的方法优于现有方法,表明实现QoS保证。

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