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首页> 外文期刊>IEEE Transactions on Communications >High-Speed Indoor Optical Wireless Links Employing Fast Angle and Power Adaptive Computer-Generated Holograms With Imaging Receivers
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High-Speed Indoor Optical Wireless Links Employing Fast Angle and Power Adaptive Computer-Generated Holograms With Imaging Receivers

机译:利用具有成像接收器的快速角度和功率自适应计算机生成全息图的高速室内光学无线链路

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In this paper, we introduce an adaptive optical wireless system that employs a finite vocabulary of stored holograms. We propose a fast adaptation approach based on a divide and conquer methodology resulting in a number of adaptation algorithms: fast angle adaptive holograms (FAA-Holograms), fast power adaptive holograms (FPA-Holograms), and fast angle and power adaptive holograms (FAPA-Holograms) and evaluate these in mobile optical wireless (OW) systems in conjugation with imaging reception. The ultimate goal is to improve the signal-to-noise ratio (SNR), to reduce the effect of intersymbol-interference (ISI), to speed up the adaptation process, and to eliminate the need to calculate the hologram in real-time at each transmitter and receiver location. The system operates at high data rates under the impact of multipath dispersion, background noise and mobility. At a data rate of 2.5 Gb/s and under eye safety regulations, the proposed FAPA-Holograms offers around 20 dB SNR in the presence of background shot noise, receiver noise, multipath dispersion, and mobility. Simulation results show that the proposed system, FAPA-Holograms, can reduce the time required to identify the optimum hologram position from 80 ms in the original beam angle and power adaptive line strip multibeam system (APA-LSMS) to about 13 ms.
机译:在本文中,我们介绍了一种自适应光学无线系统,该系统采用了存储的全息图的有限词汇量。我们提出了一种基于分治法的快速适应方法,该方法产生了多种适应算法:快速角度自适应全息图(FAA-Holograms),快速功率自适应全息图(FPA-Holograms)以及快速角度和功率自适应全息图(FAPA -全息图),并结合成像接收在移动光无线(OW)系统中进行评估。最终目标是提高信噪比(SNR),减少符号间干扰(ISI)的影响,加快自适应过程并消除实时计算全息图的需要每个发射器和接收器位置。该系统在多径色散,背景噪声和移动性的影响下以高数据速率运行。在存在背景散粒噪声,接收器噪声,多径色散和移动性的情况下,建议的FAPA全息图以2.5Gb / s的数据速率和人眼安全法规提供的SNR约为20dB。仿真结果表明,所提出的系统FAPA全息图可以将识别最佳全息图位置所需的时间从原始光束角和功率自适应线带多光束系统(APA-LSMS)中的80毫秒减少到约13毫秒。

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