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Autonomous satellite constellation for enhanced Earth coverage using coupled selection equations

机译:使用耦合选择方程式的增强空间覆盖的自主卫星星座

摘要

This paper presents a novel solution to the problem of autonomous task allocation for a self-organising constellation of small satellites in Earth orbit. The method allows the constellation members to plan manoeuvres to cluster themselves above particular target longitudes on the Earth’s surface. This is enabled through the use of Coupled Selection Equations, which represent a dynamical systems approach to combinatorial optimisation problems, and whose solution tends towards a Boolean matrix which describes pairings of the satellites and targets which solves the relevant assignment problems. Satellite manoeuvres are actuated using a simple control law which incorporates the results of the Coupled Selection Equations. Three demonstrations of the efficacy of the method are given in order of increasing complexity - first with an equal number of satellites and targets, then with a surplus of satellites, including agent failure events, and finally with a constellation of two different satellite types. The method is shown to provide efficient solutions, whilst being computationally non-intensive, quick to converge and robust to satellite failures. Proposals to extend the method for on-board processing on a distributed architecture are discussed.
机译:本文提出了一种解决地球轨道小卫星自组织星座自主任务分配问题的新方法。该方法允许星座成员计划演习,以使其自身聚集在地球表面上的特定目标经度之上。这是通过使用耦合选择方程实现的,该方程代表一种解决组合优化问题的动力学系统方法,其解决方案倾向于布尔矩阵,该布尔矩阵描述了解决相关分配问题的卫星和目标的配对。卫星操纵是通过简单的控制定律进行的,该定律结合了耦合选择方程的结果。按复杂度递增的顺序对方法的有效性进行了三个演示:首先使用相同数量的卫星和目标,然后使用过多的卫星(包括代理故障事件),最后使用两种不同类型的卫星。示出了该方法提供了有效的解决方案,同时在计算上不费力,快速收敛并且对卫星故障具有鲁棒性。讨论了扩展用于在分布式体系结构上进行机载处理的方法的建议。

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