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首页> 外文期刊>Journal of Spacecraft and Rockets >Very-Small-Satellite Design for Distributed Space Missions
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Very-Small-Satellite Design for Distributed Space Missions

机译:分布式太空任务的超小型卫星设计

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摘要

A new class of remote sensing and scientific distributed space missions is emerging that requires hundreds to thousands of satellites for simultaneous multipoint sensing. These missions, stymied by the lack of a low-cost mass-producible sensor node, can become reality by merging the concepts of distributed satellite systems and terrestrial wireless sensor networks. A novel, subkilogram, very-small-satellite design can potentially enable these missions. Existing technologies are first investigated, such as standardized picosatellites and microengineered aerospace systems. Two new alternatives are then presented that focus on a low-cost approach by leveraging existing commercial mass-production capabilities: a satellite on a chip (SpaceChip) and a satellite on a printed circuit board. Preliminary results indicate that SpaceChip and a satellite on a printed circuit board offer an order of magnitude of cost savings over existing approaches.
机译:正在出现一类新的遥感和科学分布式空间飞行任务,该任务需要数百至数千颗卫星同时进行多点传感。这些任务由于缺乏低成本的可大量生产的传感器节点而受阻,可以通过合并分布式卫星系统和地面无线传感器网络的概念来实现。新颖的,亚千克级,超小型卫星设计可以实现这些任务。首先对现有技术进行了研究,例如标准化的微型卫星和微型工程航空系统。然后,提出了两个新的替代方案,它们通过利用现有的商业批量生产能力来关注低成本方法:片上卫星(SpaceChip)和印刷电路板上的卫星。初步结果表明,SpaceChip和印刷电路板上的卫星比现有方法节省了一个数量级的成本。

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