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用于远程无后向反射器自由空间系统的全息跟踪模块设计。

Design of a holographic tracking module for long-range retroreflector free-space systems.

作者信息

Quintana C, Erry G, Gomez A, Thueux Y, Faulkner G E, O'Brien D C

出版信息

Appl Opt. 2016 Sep 1;55(25):7173-8. doi: 10.1364/AO.55.007173.

Abstract

Weight reduction and low power consumption are key requirements in the next generation of unmanned aerial vehicles (UAVs). To communicate with an operator, a secured link between the UAV and a ground-based station is desirable. To realize these links, retroreflecting free-space optics is potentially attractive as it offers light weight and low complexity at the UAV. However, the base station requires a high-performance tracking module to enable a steady illumination of the UAV retroreflector. In this paper, we present the design and implementation of a tracking system, which consists of coarse tracking and holographic fine tracking modules working cooperatively. Using this system, experimental field trials were carried out by mounting a multiple-quantum-well-based modulated retroreflector on a commercial UAV. A 2 Mbps optical link was achieved with a bit error rate of ∼2×10 at a link range of 300 m.

摘要

减轻重量和降低功耗是下一代无人机(UAV)的关键要求。为了与操作员进行通信,无人机与地面站之间需要一个安全的链路。为了实现这些链路,后向反射自由空间光学技术具有潜在的吸引力,因为它在无人机上具有重量轻和复杂度低的特点。然而,基站需要一个高性能的跟踪模块,以实现对无人机后向反射器的稳定照明。在本文中,我们介绍了一种跟踪系统的设计与实现,该系统由协同工作的粗跟踪和全息精跟踪模块组成。使用该系统,通过在商用无人机上安装基于多量子阱的调制后向反射器进行了实地试验。在300米的链路范围内,实现了2 Mbps的光链路,误码率约为2×10 。

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