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Beam shaping for uplink transmission of a relay mirror system

机译:用于中继镜系统上行传输的波束成形

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We establish the model of a two-Cassegrain-telescope system that is commonly used in a relay mirror system. With this model, uplink transmission of the relay mirror system is theoretically analyzed. We determined that uplink transmission with turbulence completely corrected is not an optimal mode. We improve power coupling efficiency of the two-Cassegrain-telescope system by optimizing the optical phase at the launching telescope by use of the stochastic parallel gradient descent algorithm. For a 10km vertical uplink transmission, power coupling efficiencies of the system are 63.10percent, 87.82percent, and 97.80percent corresponding to an open-loop mode, a closed-loop mode, and a closed-loop with optimization mode, respectively. For a 30 km vertical uplink transmission, power coupling efficiencies of the system are 22.35percent, 82.66percent, and 91.91percent, corresponding to an open-loop mode, a closed-loop mode, and a closed-loop with optimization mode, respectively. The results show that power coupling efficiency of the two-Cassegrain-telescope system is significantly improved.
机译:我们建立了通常在中继镜系统中使用的两个卡塞格林望远镜系统的模型。使用该模型,从理论上分析了中继镜系统的上行传输。我们确定,湍流得到完全校正的上行链路传输不是最佳模式。通过使用随机平行梯度下降算法优化发射望远镜的光学相位,我们提高了两卡塞格林望远镜系统的功率耦合效率。对于10 km垂直上行传输,系统的功率耦合效率分别为63.10%,87.82%和97.80%,分别对应于开环模式,闭环模式和带优化模式的闭环。对于30 km的垂直上行链路传输,系统的功率耦合效率分别为22.35%,82.66%和91.91%,分别对应于开环模式,闭环模式和带优化模式的闭环。结果表明,两个卡塞格林望远镜系统的功率耦合效率得到了显着提高。

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