Families (of Products) in Space

M. Hinchey
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Abstract

NASA is developing plans for innovative and novel approaches to future (unmanned) space exploration missions. Future missions involve sending spacecraft and robots to harsh environments, where resilience is necessary for the survival of the mission. In addition, distances and communication lead times between the spacecraft and Earth necessitate much of the mission operation being autonomous. We have been conducting research on the development of autonomous space exploration missions based on principles from Autonomic Computing (AC), whereby the mission is imbued with self-management capabilities. Such missions will involve several, rather than single, spacecraft, robots or other devices, operating in collaboration. We describe one such concept mission, ANTS (Autonomous Nano-Technology Swarm), which involves a number of sub-missions that are self-similar. Our work in this, and other future missions, has involved the use of techniques from AC for building in self-management, and ultimately self-governance. We have also explored the use of formal methods to gain confidence in the correct behavior of the mission. Since both the physical devices which will be used for exploration, and the software that is essential for their successful deployment, lend themselves to a product-line approach, we have been exploiting techniques from software product-line engineering, in particular Multi-Agent System Product Lines (MAS-PL) and Dynamic Software Product Lines (DSPL).
太空中的产品族
美国国家航空航天局正在为未来(无人)太空探索任务制定创新和新颖方法的计划。未来的任务包括将航天器和机器人送到恶劣的环境中,在那里,恢复能力是任务生存所必需的。此外,航天器与地球之间的距离和通信前置时间要求大部分任务操作必须是自主的。我们一直在研究基于自主计算(AC)原理的自主空间探索任务的发展,该任务充满了自我管理能力。这样的任务将涉及多个而不是单个航天器、机器人或其他设备,它们将协同工作。我们描述了一个这样的概念任务,ANTS(自主纳米技术群),它涉及许多自相似的子任务。我们在这方面的工作,以及其他未来的任务,涉及到使用来自AC的技术来建立自我管理,并最终实现自我治理。我们还探索了使用正式方法来获得对任务正确行为的信心。由于将用于勘探的物理设备和对其成功部署至关重要的软件都适合产品线方法,因此我们一直在利用软件产品线工程中的技术,特别是多代理系统产品线(MAS-PL)和动态软件产品线(DSPL)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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