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Pareto-hypervolumes for the Reconfiguration of SatelliteConstellations

机译:帕累托 - 超级凝固卫星的重新配置

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A satellite constellation is designed to perform its mission with a nominal number of spacecraft. When a reduction in capacity is experienced, for whatever reason, the remaining constellation may be able to restore performance through reconfiguration. In this work we present a general framework that exploits recent efforts in parallel multi-objective evolutionary computation, to reconfigure satellite constellations that have suffered the loss of one or more of their vehicles. The framework is illustrated through several loss scenarios for the Global Positioning System constellation. Pareto-hypervolumes are constructed which are the set of solutions that approximate the optimum tradeoff between minimizing cost and risk while maximizing performance. The decision making processes using the high-dimensional data sets is illustrated. The results demonstrate a pragmatic approach to optimization wherein the insights gained from a multi-objective view of the design space tradeoffs allow for informed decision making.
机译:卫星星座旨在用标称数量的航天器来执行其任务。当容量的减少经历时,无论出于何种原因,剩余的星座都可能能够通过重新配置来恢复性能。在这项工作中,我们提出了一项一般框架,利用并行多目标进化计算的最近努力,重新配置卫星星座,这些卫星星座遭受了损失了一个或多个车辆。通过全球定位系统星座的几种损耗方案来说明该框架。构造帕累托 - 超耐受普罗脉,这是一组解决方案,该解决方案近似最大限度地减少成本和风险之间的最佳权衡,同时最大化性能。示出了使用高维数据集的决策过程。结果证明了优化的务实方法,其中从设计空间权衡的多目标视图中获得的见解允许明智的决策。

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