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使用有限空间模式的自适应光学 LEO 上行链路预补偿。

Adaptive optics LEO uplink pre-compensation with finite spatial modes.

出版信息

Opt Lett. 2023 Feb 15;48(4):880-883. doi: 10.1364/OL.482550.

Abstract

Adaptive optics pre-compensation of free-space optical communications uplink from ground to space is complicated by the "point ahead angle" due to spacecraft velocity and the finite speed of light, as well as anisoplanatism of the uplink beam and the wavefront beacon. This Letter explores how pre-compensation varies with the number of spatial modes applied and how it varies with a beacon at the point-ahead angle versus a downlink beacon. Using a w = 16 cm Gaussian beam propagating through a modified Hufnagel-Valley model as an example, we find pre-compensation performance plateaus beyond ∼100 applied modes regardless of integrated turbulence strength, and that a point ahead beacon provides a 1-4 dB gain in median received power and an order-of-magnitude reduction in scintillation over a downlink beacon at wavelengths typical of optical communications. Modeling tailored to specific scenarios should be conducted to determine whether implementing a resource-intensive point ahead beacon is the optimum path to meeting link requirements.

摘要

自适应光学前向补偿在地面到空间的自由空间光通信上行链路中是复杂的,因为有“超前角”,这是由于航天器的速度和光的有限速度,以及上行光束和波前信标的各向异性。本信研究了前向补偿如何随应用的空间模式数量而变化,以及它如何随信标在超前角与下行链路信标而变化。使用传播穿过修正后的 Hufnagel-Valley 模型的 w = 16 cm 高斯光束作为示例,我们发现,无论集成湍流强度如何,超过 ∼100 个应用模式后,前向补偿性能就会达到稳定状态,而在与光通信典型波长相对应的位置,超前角信标提供的中值接收功率增益为 1-4 dB,闪烁减少一个数量级相对于下行链路信标。应该进行针对特定场景的建模,以确定实施资源密集型超前角信标是否是满足链路要求的最佳途径。

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