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Long-Term Statistics of Laser Beam Propagation in an Optical Ground-to-Geostationary Satellite Communications Link

机译:地对地静止卫星通信链路中激光束传播的长期统计

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A ground-to-space laser communications experiment was conducted to verify the optical interfaces between a laser communications terminal in an optical ground station and an optical payload onboard a geostationary satellite 38 000 km away. The end-to-end optical characteristics such as intensity, sensitivity, wavelength, polarization, and the modulation scheme of optical signals as well as acquisition sequences of the terminals were tested under fairly good atmospheric conditions. The downlink's bit error rate was on the order of 10~(-10) in spite of atmospheric turbulence. Atmospheric turbulence-induced signal fading increased the uplink bit error rate, the best value of which was 2.5×10~(-5) because the turbulent layer near the earth surface affects the uplink signal more than it does the downlink one. The far-field optical antenna patterns were measured through the ground-to-satellite laser links. The long-term statistics of the optical signal data is in good agreement with the calculated joint probability density function due to atmospheric turbulence and pointing jitter error effects, which means the stationary stochastic process can be applied to not only the static link analysis but also the dynamic link performance of the optical communications link. The equivalent broadened optical beam pattern should be used for the fading analysis even though the atmospheric coherence length is larger than the antenna diameter or the optical beam diameter of the transmitter. From these results, a more accurate dynamic link design of the optical communications link can be performed that would be useful for system designers, especially for designers of commercial systems.
机译:进行了地对空激光通信实验,以验证光学地面站中激光通信终端与38 000 km外的对地静止卫星上的光学有效载荷之间的光学接口。在相当好的大气条件下测试了端到端的光学特性,例如强度,灵敏度,波长,偏振,光信号的调制方案以及终端的采集顺序。尽管存在大气湍流,下行链路的误码率仍在10〜(-10)数量级。大气湍流引起的信号衰落增加了上行链路误码率,其最佳值为2.5×10〜(-5),因为靠近地表的湍流层对上行链路信号的影响要大于对下行链路的影响。远场光学天线方向图是通过地对地激光链路测量的。由于大气湍流和指向抖动误差的影响,光信号数据的长期统计与计算出的联合概率密度函数非常吻合,这意味着静态随机过程不仅可以应用于静态链路分析,而且可以应用于静态链路分析。光通信链路的动态链路性能。即使大气相干长度大于天线直径或发射机的光束直径,也应使用等效的加宽光束方向图进行衰落分析。根据这些结果,可以执行光通信链路的更准确的动态链路设计,这对于系统设计者,特别是商业系统的设计者将是有用的。

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