首页> 外文会议>International Conference on Space Optical Systems and Applications >Intersatellite-Link Demonstration Mission between CubeSOTA (LEO CubeSat) and ETS9-HICALI (GEO Satellite)
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Intersatellite-Link Demonstration Mission between CubeSOTA (LEO CubeSat) and ETS9-HICALI (GEO Satellite)

机译:Cubesota(Leo Cubeesat)和ETS9-HOITEI(Geo Satellite)之间的ittersatellite-Link演示使命

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LEO-to-GEO intersatellite links using laser communications bring important benefits to greatly enhance applications such as downloading big amounts of data from LEO satellites by using the GEO satellite as a relay. By using this strategy, the total availability of the LEO satellite increases from less than 1% if the data is downloaded directly to the ground up to about 60% if the data is relayed through GEO. The main drawback of using a GEO relay is that link budget is much more difficult to close due to the much larger distance. However, this can be partially compensated by transmitting at a lower data rate, and still benefiting from the much-higher link availability when compared to LEO-to-ground downlinks, which additionally are more limited by the clouds than the relay option. After carrying out a feasibility study, NICT and the University of Tokyo started preparing a mission to demonstrate the technologies needed to perform these challenging lasercom links. Furthermore, to demonstrate the feasibility of this technique, an extremely-small satellite, i.e. a 6U CubeSat, will be used to achieve data rates as high as 10 Gbit/s between LEO and GEO. Some of the biggest challenges of this mission are the extremely low size, weight and power available in the CubeSat, the accurate pointing precision required for the lasercom link, and the difficulties of closing the link at such a high speed as 10 Gbit/s.
机译:使用激光通信的leo-to-geo ittersatellite链接带来了重要的好处,可以通过使用Geo卫星作为继电器来实现从Leo卫星的大量数据下载大量数据。通过使用此策略,如果数据通过Geo中继,则LEO卫星的总可提供性从低于大约60%的数据下载到大约60%。使用Geo Relay的主要缺点是由于距离更大的距离,链路预算要难以关闭。然而,这可以通过以较低的数据速率传输来部分地补偿,并且与与leo到地下行链路相比,从更高的链路可用性仍然受益,其另外更受云的限制而不是中继选项。在进行可行性研究后,“东京大学就准备展示执行这些具有挑战性的Lasercom联系所需的技术”。此外,为了证明这种技术的可行性,一个极小的卫星,即6U CubeSat,将用于在Leo和Geo之间实现高达10 Gbit / s的数据速率。该任务的一些最大挑战是立方体中可用的极低尺寸,重量和功率,激光器链路所需的准确指向精度,以及以10 Gbit / s的高速关闭链接的困难。

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