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Optimization of Received Power and SNR for an Indoor Attocells Network in Visible Light Communication

机译:室内Attocells网络可见光通信中接收功率和SNR的优化

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摘要

White LEDs Visible Light Communication (VLC) is applied in communication and illumination simultaneously. It provides unrestrained frequency spectrum and a large bandwidth that produces a higher transmission rate and speed in short-range communication. Also, VLC was considered as a promising alternative technology to the radio frequency in the next generation of communication systems. In this paper, the optical attocells configuration and LEDs distribution are proposed for optimizing the received power and Signal-to-Noise Ratio (SNR) in the Line of Sight (LOS) propagation link. Besides that, the trade-off between minimum SNR and received power are investigated. The simulation results showed that the proposed model can save 6.25% of the total transmitted power, and the optical received power versus semi-angle and field of view have with about increased 16.5% and 27.54% respectively. Moreover, the SNR also has 7.4% improvement. Hence, the proposed configuration model has improved the performance of VLC systems and has widen the window for future improvement.
机译:白色LED可见光通信(VLC)同时应用于通信和照明。它提供不受限制的频谱和大带宽,从而在短距离通信中产生更高的传输速率和速度。而且,VLC被认为是下一代通信系统中射频的有前途的替代技术。在本文中,提出了光学attocell的配置和LED分布,以优化视线(LOS)传播链路中的接收功率和信噪比(SNR)。除此之外,还研究了最小SNR与接收功率之间的权衡。仿真结果表明,提出的模型可以节省总发射功率的6.25%,相对于半角和视场,光接收功率分别增加了约16.5%和27.54%。而且,SNR也提高了7.4%。因此,提出的配置模型提高了VLC系统的性能,并拓宽了未来改进的范围。

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