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OWLS: a ten-year history in optical wireless links for intra-satellite communications

机译:OWLS:卫星内部通信的光学无线链路已有十年历史

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The application of Optical Wireless Links to intra- Spacecraft communications (OWLS) is presented here. This work summarizes ten years of developments, ranging from basic optoelectronic parts and front-end electronics, to different inorbit demonstrations. Several wireless applications were carried out in representative environments at ground level, and on in-flight experiments. A completely wireless satellite will be launched at the beginning of 2010. The benefits of replacing standard data wires and connectors with wireless systems are: mass reduction, flexibility, and simplification of the Assembly, Integration and Tests phases (AIT). However, the Aerospace and Defense fields need high reliability solutions. The use of COTS (Commercial-Off-The- Shelf) parts in these fields require extensive analyses in order to attain full product assurance. The current commercial optical wireless technology needs a deep transformation in order to be fully applicable in the aforementioned fields. Finally, major breakthroughs for the implementation of optical wireless links in Space will not be possible until dedicated circuits such as mixed analog/digital ASICs are developed. Once these products become available, it will also be possible to extend optical wireless links to other applications, such as Unmanned Air and Underwater Vehicles (UAV and UUV). The steps taken by INTA to introduce Optical Wireless Links in the Space environment are presented in this paper.
机译:此处介绍了光无线链路在航天器内部通信(OWLS)中的应用。这项工作总结了十年的发展,从基本的光电部件和前端电子到不同的在轨演示。在具有代表性的环境中,在地面上以及在飞行中的实验中进行了几种无线应用。一个完全无线的卫星将在2010年初发射。用无线系统替换标准数据线和连接器的好处是:减少质量,提高灵活性,并简化组装,集成和测试阶段(AIT)。但是,航空航天和国防领域需要高可靠性的解决方案。在这些领域中使用COTS(现成的商用)零件需要进行广泛的分析,以便获得完整的产品保证。为了完全适用于上述领域,当前的商业光学无线技术需要进行深刻的变革。最后,在开发专用电路(例如混合的模拟/数字ASIC)之前,在太空中实现光学无线链路的重大突破将是不可能的。这些产品一经上市,便有可能将光学无线链路扩展到其他应用,例如无人驾驶飞机和水下车辆(UAV和UUV)。本文介绍了INTA采取的在空间环境中引入光无线链路的步骤。

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