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Autonomous behavioural algorithm for space applications

机译:用于空间应用的自主行为算法

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The purpose of this paper is to present a new approach in the concept and implementation of autonomy for autonomous spacecraft. The one true 'artificial agent' approach to autonomy requires the spacecraft to interact in a direct manner with the environment through the use of sensors and actuators. Rather than using complex world models, the spacecraft is allowed to exploit the dynamics of its environment for cues as to appropriate actions to take to achieve its mission goals. The particular artificial agent implementation used here has been inspired by studies of biological systems. The so-called 'cue-deficit' action selection algorithm considers the spacecraft to be a non-linear dynamical system with a number of observable states. Using optimal control theory a set of rules is derived which determine which of a finite repertoire of behaviours the spacecraft will perform. A simple model of a single imaging spacecraft in low polar Earth orbit is used to demonstrate the algorithm.
机译:本文的目的是提出一种自主航天器自主概念和实现的新方法。一种真正的“人工代理”自治方法要求航天器通过使用传感器和致动器与环境直接互动。允许航天器使用复杂的世界模型,而不是使用复杂的世界模型,以提示采取适当行动以实现其任务目标。此处使用的特定人工制剂实现方式受到了生物系统研究的启发。所谓的“提示缺陷”动作选择算法将航天器视为具有许多可观察状态的非线性动力学系统。使用最佳控制理论,得出了一组规则,这些规则确定了航天器将执行哪些有限行为举动。低极地球轨道上单个成像航天器的简单模型用于演示该算法。

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