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Non-Orthogonal Multiple Access for Visible Light Communications

机译:可见光通信的非正交多路访问

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The main limitation of visible light communication (VLC) is the narrow modulation bandwidth, which reduces the achievable data rates. In this letter, we apply the non-orthogonal multiple access (NOMA) scheme to enhance the achievable throughput in high-rate VLC downlink networks. We first propose a novel gain ratio power allocation (GRPA) strategy that considers the users’ channel conditions to ensure efficient and fair power allocation. Our results indicate that the GRPA significantly enhances the system performance compared with the static power allocation. We also study the effect of tuning the transmission angles of the light emitting diodes and the field of views of the receivers, and demonstrate that these parameters can offer new degrees of freedom to boost the NOMA performance. The simulation results reveal that NOMA is a promising multiple access scheme for the downlink of VLC networks.
机译:可见光通信(VLC)的主要限制是窄的调制带宽,这降低了可达到的数据速率。在这封信中,我们应用非正交多址(NOMA)方案来提高高速率VLC下行链路网络中可达到的吞吐量。我们首先提出一种新颖的增益比率功率分配(GRPA)策略,该策略考虑了用户的信道状况以确保有效且公平的功率分配。我们的结果表明,与静态功率分配相比,GRPA大大提高了系统性能。我们还研究了调整发光二极管的传输角度和接收器视场的效果,并证明了这些参数可以提供新的自由度来提高NOMA性能。仿真结果表明,对于VLC网络的下行链路,NOMA是一种很有前途的多址方案。

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