On Optimal Spacecraft Trajectory Planning for Asteroid Visual Coverage

S. Satpute, Sina Sharif Mansouri, P. Bodin, G. Nikolakopoulos
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Abstract

In this article, an optimization based spacecraft trajectory planner for asteroid proximity missions is presented. In asteroid missions, it is of a specific interest to determine the surface and material properties of the target asteroid by obtaining high-resolution measurements from multiple sites over the asteroid surface. During this mission, an important problem to solve is the trajectory planning for the spacecraft, that results into a visual coverage problem for the asteroid surface. However, asteroids provide a challenging target for such missions since they are partially illuminated, rotating, irregular shaped bodies with a low (micro) but irregular gravity field. For addressing this challenging problem, this article will propose a novel optimization approach for the visual coverage of an asteroid. Thus, the proposed trajectory planner's objective is to determine the sequence of the areas to cover and the associated trajectories to achieve this coverage, while considering the motion of the spacecraft, the rotation dynamics of the asteroid, the illumination to each asteroid site and the irregular gravity constraints of the asteroid. The efficacy of the proposed optimal trajectory planner is evaluated through multiple simulation results, where it demonstrates successful optimal coverage of all the desired asteroid areas.
小行星目视覆盖下航天器最优轨迹规划研究
提出了一种基于优化的小行星接近任务航天器轨道规划方法。在小行星任务中,通过在小行星表面的多个地点获得高分辨率测量来确定目标小行星的表面和物质特性是一个特别感兴趣的问题。在这次任务中,航天器的轨道规划是一个需要解决的重要问题,这将导致小行星表面的视觉覆盖问题。然而,小行星为这些任务提供了一个具有挑战性的目标,因为它们是部分被照亮的、旋转的、不规则形状的物体,具有低(微)但不规则的重力场。为了解决这一具有挑战性的问题,本文将提出一种新的小行星视觉覆盖优化方法。因此,所提出的轨道规划器的目标是确定覆盖区域的顺序以及实现覆盖的相关轨迹,同时考虑航天器的运动、小行星的旋转动力学、每个小行星点的照明以及小行星的不规则重力约束。通过多个仿真结果评估了所提出的最优轨迹规划器的有效性,其中它成功地优化了所有期望的小行星区域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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