Department of Electrical and Electronic Engineering, Yonsei University, Seoul 03722, Republic of Korea.
Sensors (Basel). 2023 May 24;23(11):5045. doi: 10.3390/s23115045.
Free-space optical (FSO) communication has been studied for next-generation network systems. Because an FSO system establishes point-to-point communication links, maintaining alignment among the transceivers is a critical challenge. In addition, atmospheric turbulence causes significant signal loss in FSO vertical links. Even in clear weather conditions, transmitted optical signals suffer significant scintillation losses due to random variations. Thus, the effect of atmospheric turbulence should be considered in vertical links. In this paper, we analyze the relationship between pointing error and scintillation from the aspect of beam divergence angle. Furthermore, we propose an adaptive beam that optimizes its divergence angle according to the pointing error between the communicating optical transceivers to mitigate the effect of scintillation due to pointing error. We performed a beam divergence angle optimization and compared it with adaptive beamwidth. The proposed technique was demonstrated using simulations, which revealed an enhanced signal-to-noise ratio and the mitigation of the scintillation effect. The proposed technique would be useful in minimizing the scintillation effect in vertical FSO links.
自由空间光(FSO)通信已被研究用于下一代网络系统。由于 FSO 系统建立点对点通信链路,因此保持收发器之间的对准是一个关键挑战。此外,大气湍流会导致 FSO 垂直链路中的信号严重损失。即使在晴朗的天气条件下,由于随机变化,传输的光信号也会遭受严重的闪烁损失。因此,应在垂直链路中考虑大气湍流的影响。在本文中,我们从光束发散角的角度分析了指向误差和闪烁之间的关系。此外,我们提出了一种自适应光束,根据通信光收发器之间的指向误差优化其发散角,以减轻由于指向误差引起的闪烁效应。我们进行了光束发散角优化,并将其与自适应光束宽度进行了比较。所提出的技术通过仿真进行了验证,结果表明信噪比得到了提高,并且闪烁效应得到了缓解。该技术将有助于最小化垂直 FSO 链路中的闪烁效应。