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Self-organising satellite constellation in geostationary earth orbit

机译:对地静止地球轨道上的自组织卫星星座

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This paper presents a novel solution to the problem of autonomous task allocation for a self-organising satellite constellation in Earth orbit. The method allows satellites to cluster themselves above targets on the Earth???s surface. This is achieved using coupled selection equations (CSEs), a dynamical systems approach to combinatorial optimisation whose solution tends asymptotically towards a Boolean matrix describing the pairings of satellites and targets, which solves the relevant assignment problems. Satellite manoeuvres are actuated by an artificial potential field method which incorporates the CSE output. Three demonstrations of the method???s efficacy are given, first with equal numbers of satellites and targets, then with a satellite surplus, including agent failures, and finally with a fractionated constellation. Finally, a large constellation of 100 satellites is simulated to demonstrate the utility of the method in future swarm mission scenarios. The method provides efficient solutions with quick convergence, is robust to satellite failures, and hence appears suitable for distributed, on-board autonomy.
机译:本文提出了一种解决地球轨道自组织卫星星座自主任务分配问题的新方法。该方法允许卫星将自身聚集在地球表面的目标上方。这是通过使用耦合选择方程(CSE)实现的,这是一种动态系统组合优化方法,其解决方案趋于渐近地趋向于描述卫星和目标配对的布尔矩阵,从而解决了相关的分配问题。卫星机动是通过结合CSE输出的人工势场方法进行的。给出了该方法功效的三个演示,首先是使用相同数量的卫星和目标,然后是包含代理故障的卫星剩余,最后是星座图。最后,模拟了一个由100个卫星组成的大型星座,以证明该方法在未来的群任务场景中的实用性。该方法提供了具有快速收敛性的有效解决方案,对卫星故障具有鲁棒性,因此似乎适用于分布式机载自治。

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