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Evaluation of a cone tracking algorithm for free-space optical communication in direct mode

机译:直接模式下自由空间光通信的锥面跟踪算法的评估

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The implementation of cone tracking to optimize the beam pointing in a retro-reflective link was reported in prior work [1]. One parameter required to close the loop is the phase difference between the scanning signal and the reflected modulated power, which gives the direction of the error. The phase difference is easy to measure in a retro-reflective link because the beam is reflected back to the transmitter making the feedback signal locally available. In a direct mode configuration, this phase difference is unknown. The problem was avoided in prior work [2] by using two detectors a few inches apart. This paper presents the results of the evaluation, using simulation, of an algorithm that estimates and tracks the phase difference between the two ends of the link making it possible to close the loop and insure convergence. It also shows how to implement the feedback path without using an additional beam as opposed to using an additional high-power wide-divergence beam.
机译:先前的工作[1]中已经报道了采用锥形跟踪来优化回射链路中的光束指向的实现。闭合环路所需的一个参数是扫描信号与反射调制功率之间的相位差,它给出了误差的方向。相位差很容易在回射链路中测量,因为光束会反射回发射机,从而使反馈信号在本地可用。在直接模式配置中,此相位差未知。通过使用相距几英寸的两个检测器,可以避免先前的问题[2]。本文介绍了通过仿真评估算法的结果,该算法可以估算和跟踪链路两端之间的相位差,从而可以闭合环路并确保收敛。它还显示了如何在不使用附加光束的情况下实现反馈路径,而不是使用附加的高功率宽色散光束。

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