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20 Gbps Mobile Indoor Visible Light Communication System Employing Beam Steering and Computer Generated Holograms

机译:采用波束控制和计算机生成全息图的20 Gbps移动室内可见光通信系统

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摘要

Visible light communication (VLC) systems have typically operated at data rates below 10 Gbps and operation at this data rate was shown to be feasible by using laser diodes (LDs), imaging receivers and delay adaptation techniques (DAT imaging LDs-VLC). However, higher data rates, beyond 10 Gbps, are challenging due to the low signal to noise ratio (SNR) and inter symbol interference (ISI). In this paper, for the first time, to the best of our knowledge, we propose, design and evaluate a VLC system that employs beam steering (of part of the VLC beam) using adaptive finite vocabulary of holograms in conjunction with an imaging receiver and a delay adaptation technique to enhance SNR and to mitigate the impact of ISI at high data rates (20 Gbps). An algorithm was used to estimate the receiver location, so that part of the white light can be directed towards a desired target (receiver) using beam steering to improve SNR. Simulation results of our location estimation algorithm (LEA) indicated that the required time to estimate the position of the VLC receiver is typically within 224 ms in our system and environment. A finite vocabulary of stored holograms is introduced to reduce the computation time required by LEA to identify the best location to steer the beam to the receiver location. The beamsteering approach improved the SNR of the fully adaptive VLC system by 15 dB at high data rates (20 Gbps) over the DAT imaging LDs-VLC system in the worst case scenario. In addition, we examined our new proposed system in a very harsh environment with mobility. The results showed that our proposed VLC system has strong robustness against shadowing, signal blockage and mobility.
机译:可见光通信(VLC)系统通常以低于10 Gbps的数据速率运行,并且通过使用激光二极管(LD),成像接收器和延迟自适应技术(DAT成像LDs-VLC)显示了以该数据速率运行是可行的。但是,由于低信噪比(SNR)和符号间干扰(ISI),超过10 Gbps的更高数据速率具有挑战性。在本文中,就我们所知,这是第一次,我们提出,设计和评估一种VLC系统,该系统利用全息图的自适应有限词汇结合成像接收器和信号接收器,使用(部分VLC光束)光束转向。一种延迟自适应技术,可提高SNR并减轻ISI在高数据速率(20 Gbps)下的影响。使用一种算法来估计接收器的位置,以便可以使用光束控制以提高SNR的方式将白光的一部分射向所需的目标(接收器)。我们的位置估计算法(LEA)的仿真结果表明,在我们的系统和环境中,估计VLC接收机位置所需的时间通常在224毫秒之内。引入了有限的存储全息图词汇,以减少LEA识别最佳位置以将光束转向接收器位置所需的计算时间。在最坏的情况下,与DAT成像LDs-VLC系统相比,波束控制方法在高数据速率(20 Gbps)时将完全自适应VLC系统的SNR提高了15 dB。此外,我们在非常恶劣的机动性环境中检查了我们提出的新系统。结果表明,我们提出的VLC系统具有强大的鲁棒性,可抵抗阴影,信号阻塞和移动性。

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