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On the reliability, availability, and throughput of satellite swarms

机译:关于卫星群的可靠性,可用性和吞吐量

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Based on the opportunities and gained reputation of individual nanosatellites, a larger number of identical nanosatellites may, in the future, build up a spacecraft swarm for applications, such as multipoint sensing, virtual instruments, or enhanced communication. However, the overall system characterization of such a spacecraft swarm as well as its comparison to classical monolithic space architectures has not yet been performed. To this end, we model, analyze, and compare the lifetime of nanosatellites and classical larger satellites using representative Markov models and Monte-Carlo analysis. We model, characterize, and analyze swarm-specific aspects, in particular, systemwide reliability, availability, and throughput. Finally, we critically examine design strategies for spacecraft swarms that suggest individual spacecraft to take over functionality from other swarm satellites with the goal to increase system-level performance.
机译:根据各个纳米卫星的机会和获得的声誉,将来,大量相同的纳米卫星可能会为诸如多点传感,虚拟仪器或增强通信之类的应用而建立一个飞船群。然而,尚未进行这种航天器群的整体系统表征以及与经典整体空间体系结构的比较。为此,我们使用代表性的马尔可夫模型和蒙特卡洛分析法对纳米卫星和经典大型卫星的寿命进行建模,分析和比较。我们对特定于群体的方面进行建模,表征和分析,尤其是系统范围的可靠性,可用性和吞吐量。最后,我们批判性地研究了飞船群的设计策略,这些策略建议单个飞船从其他群卫星中接管其功能,以提高系统级性能。

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