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An autonomous satellite architecture integrating deliberative reasoning and behavioural intelligence

机译:融合了审议推理和行为智能的自主卫星架构

摘要

This paper describes a method for the design of autonomous spacecraft, based upon behavioral approaches to intelligent robotics. First, a number of previous spacecraft automation projects are reviewed. A methodology for the design of autonomous spacecraft is then presented, drawing upon both the European Space Agency technological center (ESTEC) automation and robotics methodology and the subsumption architecture for autonomous robots. A layered competency model for autonomous orbital spacecraft is proposed. A simple example of low level competencies and their interaction is presented in order to illustrate the methodology. Finally, the general principles adopted for the control hardware design of the AUSTRALIS-1 spacecraft are described. This system will provide an orbital experimental platform for spacecraft autonomy studies, supporting the exploration of different logical control models, different computational metaphors within the behavioral control framework, and different mappings from the logical control model to its physical implementation.
机译:本文介绍了一种基于行为的智能机器人技术设计自主航天器的方法。首先,回顾了许多先前的航天器自动化项目。然后,根据欧洲航天局技术中心(ESTEC)的自动化和机器人技术以及自主机器人的包含架构,提出了一种自主航天器的设计方法。提出了自主轨道航天器的分层能力模型。给出了一个低水平能力及其相互作用的简单示例,以说明该方法。最后,描述了用于AUSTRALIS-1航天器控制硬件设计的一般原理。该系统将为航天器自主性研究提供轨道实验平台,支持探索不同的逻辑控制模型,行为控制框架内的不同计算隐​​喻以及从逻辑控制模型到其物理实现的不同映射。

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  • 作者

    Lindley Craig A.;

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  • 年度 1993
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