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Next generation system and software architectures Challenges from future NASA exploration missions

机译:下一代系统和软件架构未来NASA探索任务带来的挑战

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The four key objective properties of a system that are required of it in order for it to qualify as "autonomic" are now well-accepted—self-configuring, self-healing, self-protecting, and self-optimizing—together with the attribute properties—viz. self-aware, environment-aware, self-monitoring and self-adjusting. This paper describes the need for next generation system software architectures, where components are agents, rather than objects masquerading as agents, and where support is provided for self-~* properties (both existing self-chop and emerging self-~* properties). These are discussed as exhibited in NASA missions, and in particular with reference to a NASA concept mission, ANTS, which is illustrative of future NASA exploration missions based on the technology of intelligent swarms.
机译:为了使系统具有“自主性”的资格,系统已经具备了四个关键的客观属性,即自我配置,自我修复,自我保护和自我优化,以及该属性属性-即。自我意识,环境意识,自我监控和自我调整。本文描述了对下一代系统软件体系结构的需求,在这种体系结构中,组件是代理,而不是伪装成代理的对象,并且提供了对self- *属性(既有现有的自砍属性又有新兴的self- *属性)的支持。这些内容已在NASA任务中进行了讨论,尤其是参考了NASA概念任务ANTS,该任务例证了未来基于智能群技术的NASA探索任务。

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