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Investigation and Demonstration of High Speed Full-Optical Hybrid FSO/Fiber Communication System under Light Sand Storm Condition

机译:沙尘暴条件下高速全光混合FSO /光纤通信系统的研究与演示

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摘要

In contrast to traditional free space optical (FSO) systems, the new generation is aimed to be transparent to optical fiber where protocols, high signal bandwidths, and high data rates over fiber are all maintained. In this paper, we experimentally demonstrate a high speed outdoor full-optical FSO communication system over 100 m link. We first describe the design of our transmitter, which consists of a comb generator and a flexible multiformat transmitter. Our measurements are performed in arid desert area under a light dust storm. In this environment, we use a 12 subcarrier comb generator, each of which is modulated by a quadrature-amplitude modulation (QAM) signal. We achieved a 1.08 Tbps error free data rate with 3.6 b/s/Hz spectral efficiency. We place long optical fiber rolls in the transmitter side and the receiver side to mimic real FSO deployments. Furthermore, we investigated the effect of receiver misalignment in outdoor conditions and the effect of background noise. We find that full-optical FSO system is sensitive to the misalignment effect. However, the background noise has negligible effect. Finally, we find that solar heating of the transceiver causes collimator deviation, which requires using a cooling unit or auto tracking system.
机译:与传统的自由空间光(FSO)系统相比,新一代的目标是对光纤透明,在光纤中协议,高信号带宽和高数据速率都可以保持。在本文中,我们通过实验演示了在100 m链路上的高速室外全光FSO通信系统。我们首先描述发射器的设计,该发射器由梳状发生器和灵活的多格式发射器组成。我们的测量是在沙尘暴少的干旱沙漠地区进行的。在这种环境下,我们使用12个子载波梳状发生器,每个发生器都由正交幅度调制(QAM)信号进行调制。我们以3.6 b / s / Hz的频谱效率实现了1.08 Tbps的无错误数据速率。我们在发送器和接收器侧放置长光纤卷,以模仿实际的FSO部署。此外,我们研究了户外条件下接收器未对准的影响以及背景噪声的影响。我们发现,全光学FSO系统对未对准效应很敏感。但是,背景噪声的影响可忽略不计。最后,我们发现收发器的太阳能加热会导致准直仪偏差,这需要使用冷却单元或自动跟踪系统。

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