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High-speed laser communications in UAV scenarios

机译:UAV方案中的高速激光通信

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摘要

Optical links, based on coherent homodyne detection and BPSK modulation with bidirectional data transmission of 5.6 Gbps over distances of about 5,000 km and BER of 10-8, have been sufficiently verified in space. The verification results show that this technology is suitable not only for space applications but also for applications in the troposphere. After a brief description of the Laser Communication Terminal (LCT) for space applications, the paper consequently discusses the future utilization of satellite-based optical data links for Beyond Line of Sight (BLOS) operations of High Altitude Long Endurance (HALE) Unmanned Aerial Vehicles (UAV). It is shown that the use of optical frequencies is the only logical consequence of an ever-increasing demand for bandwidth. In terms of Network Centric Warfare it is highly recommended that Unmanned Aircraft Systems (UAS) of the future should incorporate that technology which allows almost unlimited bandwidth. The advantages of optical communications especially for Intelligence, Surveillance and Reconnaissance (ISR) are underlined. Moreover, the preliminary design concept of an airborne laser communication terminal is described. Since optical bi-directional links have been tested between a LCT in space and a TESAT Optical Ground Station (OGS), preliminary analysis on tracking and BER performance and the impact of atmospheric disturbances on coherent links will be presented.
机译:基于相干杂交检测和BPSK调制的光学链路在空间中足够验证了在约5,000公里和10-8的距离上的5.6 Gbps的双向数据传输。验证结果表明,该技术不仅适用于空间应用,而且适用于对流层中的应用。在用于空间应用的激光通信终端(LCT)的简要描述之后,本文讨论了基于卫星的光学数据链路的未来利用,以便超出高海拔长耐久性(HALE)无人驾驶飞行器的超出视线(BLOS)操作(UAV)。结果表明,光学频率的使用是越来越多的带宽需求的唯一逻辑结果。在网络中心的战争方面,强烈建议将来的无人机系统(UAS)包含该技术,该技术允许几乎无限无限的带宽。光学通信特别适用于智能,监测和侦察(ISR)的优点是下划线。此外,描述了空气传播激光通信终端的初步设计概念。由于光学双向链路已经在空间中的LCT和TESAT光学接地站(OGS)之间进行了测试,因此呈现关于跟踪和BER性能的初步分析以及大气干扰对相干链路的影响。

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