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Performance analysis of gain ratio power allocation strategies for non-orthogonal multiple access in indoor visible light communication networks

机译:室内可见光通信网络中非正交多通道的增益比率分配策略的性能分析

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Abstract Non-orthogonal multiple access (NOMA) is a promising method for enhancing the throughput in visible light communication (VLC) networks. In NOMA, signal power domain control, called gain ratio power allocation (GRPA), can significantly improve the user sum rate with full-time frequency resource utilization. In indoor NOMA-VLC networks, the scenario in which users are covered by VLC illuminants on the ceiling is typical. First, this paper proposes a novel GRPA strategy for a single VLC cell. Second, due to the difficulty of direct comparisons between our and previously reported GRPA strategies, this paper presents an alternative lower bound for comparability. Third, in two- and three- user cases, this paper analytically demonstrates that our NOMA-VLC GRPA strategy outperforms the aforementioned strategy, when successive interference cancellation (SIC) is used. Moreover, in the multi-user case, experimental results show that the average user data rate (AUDR) of multi-user cases under our strategy is better than that under the previous strategy. Finally, our paper provides both analytic and numerical results to prove that VLC single-cell system throughput under our strategy is better than that under the previous strategy. The proposed alternative lower bound is also proved to fit the original NOMA-VLC GRPA target asymptotically based on indoor VLC channels. Furthermore, to achieve the same AUDR, our strategy supports worse received conditions than does the previous strategy.
机译:摘要非正交多次访问(NOMA)是一种提高可见光通信(VLC)网络中的吞吐量的有希望的方法。在NOMM中,信号功率域控制,称为增益比功率分配(GRPA),可以通过全时频率利用来显着提高用户和速率。在室内NOMA-VLC网络中,天花板上的VLC光照明器覆盖的方案是典型的。首先,本文提出了一种用于单个VLC细胞的新型GRPA策略。其次,由于我们和以前报告的GRPA战略之间的直接比较难度,本文提出了可比性的替代下限。第三,在二手用户案例中,本文分析了我们的NOMA-VLC GRPA策略优于上述策略,当使用连续的干扰消除(SIC)时。此外,在多用户案例中,实验结果表明,我们的策略下的多用户案例的平均用户数据速率(AUDR)优于以前的策略。最后,我们的论文提供了分析和数值结果,以证明我们的策略下的VLC单细胞系统吞吐量比以前的策略在那里更好。还证明了所提出的替代下限,以适应原始的NOMA-VLC GRPA目标渐近的基于室内VLC通道。此外,为了实现同一澳元,我们的策略支持比以前的策略更糟糕的条件。

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