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Laser beam wander monitoring with large aperture for terrestrial free space optical communication

机译:大孔径激光束漂移监测,用于地面自由空间光通信

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A prototype of large aperture laser beam wander monitor was presented for terrestrial free space optical communication, which was in order to meet the increasing demand of understanding beam propagation characteristic in the turbulent atmosphere. Compared with traditional method based on a scatter board, this equipment adopted a large aperture imaging optics to receive the whole propagation beam. Thereby the received power density was higher than traditional method and the test distance could be farer. Some design details and calibration technique were discussed. The experiment was conducted over 1.5kilometers for 24 hours. The result showed that this device could be used for monitoring the whole beam wander and its daily changes. Furthermore, inspired by the experiment, an important phenomenon for FSO initialization was presented. It indicated that the daily variety of beam shape should be considered when the FSO began to point to each other. If the FSO device started at noon and receive aperture was located in the central beam of another terminal, the receive power might be weaken at night because of beam wander and intensity distribution change.
机译:提出了一种用于地面自由空间光通信的大口径激光光束漂移监测器的原型,以满足人们在湍流环境下对光束传播特性的理解的日益增长的需求。与传统的基于散射板的方法相比,该设备采用大孔径成像光学器件接收整个传播光束。因此,接收功率密度高于传统方法,测试距离可能更远。讨论了一些设计细节和校准技术。实验在1.5公里的范围内进行了24小时。结果表明,该装置可用于监测整个光束漂移及其日常变化。此外,受实验启发,提出了FSO初始化的重要现象。它表明,当FSO开始相互指向时,应考虑波束形状的日变化。如果FSO设备从中午开始,并且接收孔位于另一个终端的中央波束中,则由于波束漂移和强度分布变化,晚上的接收功率可能会变弱。

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