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Fast and efficient adaptation techniques for visible light communication systems

机译:快速有效的可见光通信系统适配技术

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Beam steering visible light communication (VLC) systems have been shown to offer performance enhancements over traditional VLC systems. However, an increase in the computational cost is incurred. In this paper, we introduce fast computer-generated holograms to speed up the adaptation process. The new, fast, and efficient fully adaptive VLC system can improve the receiver signal-to-noise ratio (SNR) and reduce the required time to estimate the position of the VLC receiver. It can also adapt to environmental changes, providing a robust link against signal blockage and shadowing. In addition, an angle diversity receiver and a delay adaptation technique are used to reduce the effect of intersymbol interference and multipath dispersion. Significant enhancements in the SNR with VLC channel bandwidths of more than 26 GHz are obtained, resulting in a compact impulse response and a VLC system that is able to achieve higher data rates (25 Gbps) with full mobility in the considered realistic indoor environment.
机译:光束转向可见光通信(VLC)系统已显示出比传统VLC系统更好的性能。但是,导致计算成本的增加。在本文中,我们介绍了快速计算机生成的全息图,以加快自适应过程。新型,快速,高效的完全自适应VLC系统可以提高接收器的信噪比(SNR),并减少估计VLC接收器位置所需的时间。它也可以适应环境变化,为信号阻塞和阴影提供了牢固的联系。另外,使用角度分集接收机和延迟自适应技术来减小符号间干扰和多径色散的影响。当VLC通道带宽超过26 GHz时,SNR显着提高,从而产生紧凑的脉冲响应,并且VLC系统能够在考虑到的真实室内环境中以完全移动性实现更高的数据速率(25 Gbps)。

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