Andrews L C, Phillips R L, Yu P T
Appl Opt. 1995 Nov 20;34(33):7742-51. doi: 10.1364/AO.34.007742.
Estimates of the scintillation index, fractional fade time, expected number of fades, and mean duration of fade time associated with a propagating Gaussian-beam wave are developed for uplink and downlink laser satellite-communication channels. Estimates for the spot size of the beam at the satellite or the ground or airborne receiver are also provided. Weak-fluctuation theory based on the log-normal model is applicable for intensity fluctuations near the optical axis of the beam provided that the zenith angle is not too large, generally not exceeding 60°. However, there is an increase in scintillations that occurs with increasing pointing error at any zenith angle, particularly for uplink channels. Large off-axis scintillations are of particular significance because they imply that small pointing errors can cause serious degradation in the communication-channel reliability. Off-axis scintillations increase more rapidly for larger-diameter beams and, in some cases, can lead to a radial saturation effect for pointing errors less than 1 µrad off the optical beam axis.
针对上行和下行激光卫星通信信道,推导了与传播的高斯光束波相关的闪烁指数、分数衰落时间、预期衰落次数以及衰落时间平均持续时间的估计值。还提供了光束在卫星或地面或机载接收器处光斑尺寸的估计值。基于对数正态模型的弱起伏理论适用于光束光轴附近的强度起伏,条件是天顶角不太大,一般不超过60°。然而,在任何天顶角下,随着指向误差的增加,闪烁都会增加,尤其是对于上行信道。大的离轴闪烁尤为重要,因为它们意味着小的指向误差会导致通信信道可靠性严重下降。对于较大直径的光束,离轴闪烁增加得更快,在某些情况下,对于偏离光束光轴小于1微弧度的指向误差,会导致径向饱和效应。