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OPTEL-D - An Optical Communication System for the Deep Space

机译:OPTEL-D-用于深空的光通信系统

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We report the design of OPTEL-D which is an optical communication system for direct data transfer from deep space to Earth. OPTEL-D extends the link distances of current optical communication systems to the deep space. The design covers the electrical, thermal, mechanical and optical challenges that such a link distance imposes to both the ground and the space segment. The detailed conceptual system design is presented together with its trade-offs and performance analyses. The space terminal is based on a modular approach which groups the fiber-optical, the opto-mechanical, and the electrical functions into separated modules for independent accommodation. The transmitter beam is provided by an amplitude modulated MOP A system operating at 1.5um. The opto-mechanical unit accomplishes beam forming and steering of the transmit beam as well as reception of the uplink channel. An electrical unit comprises power-conditioning, data-handling, and terminal control through its interfaces to the spacecraft. It is concluded that the OPTEL-D space terminal mass and power are 34 kg and 116 Watts. Depending on the ground station configuration, a data rate of several Mbps is reached over distances of >75 Mio kilometers. Critical assumptions on the receiver sensitivity were verified by tests and the results will be presented. The design of OPTEL-D was derived in collaboration with the European Space Agency to serve the Asteroid Impact Mission. Due to its modular approach using commercially available technology, it can be realized in a competitive schedule and cost frame providing flexible yet powerful data downlinks to most deep space missions.
机译:我们报告了OPTEL-D的设计,这是一种用于将数据从深空直接传输到地球的光通信系统。 OPTEL-D将当前光通信系统的链路距离扩展到深空。该设计涵盖了电气,热,机械和光学方面的挑战,这种挑战是距离对地面和空间部分的影响。介绍了详细的概念系统设计以及其权衡和性能分析。空间终端基于模块化方法,该方法将光纤,光电机械和电气功能分组到独立的模块中,以实现独立的容纳。发射器光束由工作于1.5um的调幅MOP A系统提供。光电机械单元完成波束的形成和发射波束的控制以及上行链路信道的接收。电气单元包括功率调节,数​​据处理和通过其与航天器的接口进行的终端控制。结论是OPTEL-D空间终端的质量和功率分别为34千克和116瓦。根据地面站的配置,> 75 Mio公里的距离可以达到几Mbps的数据速率。通过测试验证了有关接收器灵敏度的关键假设,并将给出结果。 OPTEL-D的设计是与欧洲航天局合作为小行星撞击任务服务的。由于采用了可商用技术的模块化方法,因此可以在具有竞争力的进度表和成本框架中实现,从而为大多数深空任务提供灵活而强大的数据下行链路。

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