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Point-Ahead Angle and Coalignment Error Measurement Method for Free-Space Optical Communication Systems

机译:自由空间光通信系统的前指向角和共对准误差测量方法

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摘要

Microradian tracking and pointing errors significantly affect the link performance and the bit error probability in free-space optical communication. This paper proposes the measurement method for point-ahead angle and coalignment error, which can significantly mitigate the tracking and pointing error, thus reduces the power of the free-space optical communication system. By using technologies of corner cube reflector, off-axis reflecting telescope, vacuum long-light path and anti-interference support structure design, microangles can be measured accurately, especially the coalignment error angle which is formed by two wide, incoherent beams nearly antiparallel to each other. This paper introduces the measuring equipment's structure, together with the measurement method and theoretical measurement model. The measuring accuracy analysis indicated that the measurement uncertainty of both point-ahead angle and coalignment error was superior to 0.2 μrad and the validation experimental results proved that measuring accuracies of point-ahead angle and coalignment error are all smaller than 1 μrad.
机译:微弧度跟踪和指向错误会严重影响自由空间光通信中的链路性能和误码率。本文提出了一种指向前角和共对准误差的测量方法,可以大大减轻跟踪和指向误差,从而降低了自由空间光通信系统的功率。通过使用角锥反射镜,离轴反射望远镜,真空长光路和抗干扰支撑结构设计技术,可以精确地测量微角度,尤其是由两个几乎与反平行的宽非相干光束形成的共对准误差角彼此。介绍了测量设备的结构,测量方法和理论测量模型。测量精度分析表明,前倾角和共对准误差的测量不确定度均优于0.2μrad,验证实验结果表明,前倾角和共对准误差的测量精度均小于1μrad。

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