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Demonstration of high-rate laser communications from fast airborne platform: flight campaign and results

机译:快速机载平台上高速率激光通信的演示:飞行战役和成果

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Some current and future airborne payloads like high resolution cameras and radar systems need high channel capacity to transmit their data from air to ground in near real-time. Especially in reconnaissance and surveillance missions, it is important to downlink huge amount of data in very short contact times to a ground station during a flyby. Aeronautical laser communications can supply the necessary high data-rates for this purpose. Within the project DODfast (Demonstration of Optical Data link fast) a laser link from a fast flying platform was demonstrated. The flight platform was a Panavia Tornado with the laser communication terminal installed in an attached avionic demonstrator pod. The air interface was a small glass dome protecting the beam steering assembly. All other elements were integrated in a small box inside the Pod's fuselage. The receiver station was DLR's Transportable Optical Ground Station equipped with a free-space receiver front-end. Downlink wavelength for communication and uplink wavelength for beacon laser were chosen from the optical C-band DWDM grid. The test flights were carried out at the end of November 2013 near the Airbus Defence and Space location in Manching, Germany. The campaign successfully demonstrated the maturity and readiness of laser communication with a data-rate of 1.25 Gbit/s for aircraft downlinks. Pointing, acquisition and tracking performance of the airborne terminal and the ground station could be measured at aircraft speed up to 0.7 Mach and video data from an onboard camera has been transmitted. Link distances with stable tracking were up to 79 km and distance with data transmission over 50 km. In this paper, we describe the system architecture, the flight campaign and the results.
机译:一些当前和未来的机载有效载荷(例如高分辨率摄像机和雷达系统)需要较高的信道容量,以将其数据从空中实时传输到地面。特别是在侦察和监视任务中,在飞越过程中以非常短的联系时间将大量数据下行到地面站是很重要的。航空激光通信可为此提供必要的高数据速率。在DODfast(光学数据链路快速演示)项目中,演示了来自快速飞行平台的激光链路。飞行平台是Panavia Tornado,其激光通信终端安装在连接的航空电子演示器吊舱中。空气接口是一个小的玻璃圆顶,用于保护光束控制组件。所有其他元素都集成在Pod机身内部的一个小盒子中。接收站是配备有自由空间接收器前端的DLR的可移动光学地面站。从光学C波段DWDM网格中选择通信的下行链路波长和信标激光器的上行链路波长。试飞于2013年11月末在德国曼兴的空中客车防御与太空基地附近进行。该活动成功地证明了激光通信的成熟性和就绪性,飞机下行链路的数据速率为1.25 Gbit / s。机载终端和地面站的指向,获取和跟踪性能可以在飞机速度高达0.7马赫时进行测量,并且已经传输了来自机载摄像机的视频数据。稳定跟踪的链路距离可达79 km,数据传输的距离可达50 km。在本文中,我们描述了系统架构,飞行战役和结果。

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