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Using FLI maps for preliminary spacecraft trajectory design in multi-body environments

机译:使用FLI映射进行多体环境中的初步航天器轨迹设计

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摘要

Fast Lyapunov Indicator (FLI) maps are presented as a tool for solving spacecraft preliminary trajectory design problems in multi-body environments with long-term stability requirements. In particular, the FLI maps are shown to provide a global overview of the dynamics in the restricted three-body problem that can guide mission designers in selecting long-term stable regions of phase space which are inherently more robust to model parameter perturbations. The FLI is also shown to numerically detect the normally hyperbolic manifolds associated with unstable periodic orbits. These, in turn, provide a global map of the principal heteroclinic connections between the various resonance regions which form the basic backbone of dynamical transfers design. Examples of maps and transfers are provided in the restricted three-body problem modeling the Jupiter–Europa system.
机译:快速李雅普诺夫指示器(FLI)地图是作为解决具有长期稳定性要求的多体环境中的航天器初步轨迹设计问题的工具而提出的。特别是,FLI映射被显示为受约束的三体问题的动力学的全局概述,可以指导任务设计人员选择相空间固有的长期稳定区域,该区域固有地对模型参数扰动更为鲁棒。 FLI还显示出在数值上检测与不稳定周期轨道相关的正常双曲流形。这些反过来提供了各个共振区域之间主要异质连接的全局图,这些区域形成了动态传递设计的基本骨干。在对木星-欧罗巴系统进行建模的受限三体问题中提供了地图和交通的示例。

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