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Guidance algorithm for the final translational phase of autonomous close range Rendezvous and Docking of spacecraft

机译:自治近距离集合的最终翻译阶段的指导算法,宇宙飞船对接与对接

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An orbital maneuver during which two spacecraft starting from a remote distance arrive at the same orbit and approach to a closer distance is often termed a space rendezvous. Rendezvous requires a precise match of the orbital velocities of the two spacecraft which would allow them to remain at a constant distance throughout the mission. This paper proposes a novel guidance algorithm for the final translational phase of an autonomous close range Rendezvous and Docking mission, to guarantee trajectory safety. It ensures that the final translational maneuver is through a predetermined approach corridor. The proposed algorithm employs the linearized Clohessy Wiltshire equations to compute the reference positions and velocities. The multiple impulse firing strategy is utilized to effect the transfer, due to the significant reduction in the maximum trajectory deviation from the docking axis achievable. The trajectory safety is accounted for by the Line of Sight constraint and the Rendezvous and Docking durations satisfying the Line of Sight constraint are computed through the algorithm. An analytical method to determine the maximum trajectory deviation is also proposed and serves as a safety check. The proposed strategies provide a safe trajectory in the final phase of an autonomous Rendezvous and Docking mission where mission safety is critical.
机译:从遥控距离开始的两个航天器的轨道机动到达相同的轨道和接近距离的方法通常被称为集合的空间。 Rendezvous需要两种航天器的轨道速度的精确匹配,这将使它们保持在整个任务中的恒定距离。本文提出了一种新颖的近距离集合和对接任务的最终平移阶段的引导算法,以保证轨迹安全。它确保最终的翻译机动是通过预定的方法走廊。所提出的算法采用线性化的Clohessy Wilts股票方程来计算参考位置和速度。由于从扩展轴实现的最大轨迹偏差显着降低,利用多个脉冲射击策略来实现转移。通过算法计算轨迹安全由视线约束和满足视线约束线的结常数和对接持续时间。还提出了一种确定最大轨迹偏差的分析方法,并用作安全检查。拟议的策略在自主集合和对接任务的最后阶段提供了安全的轨迹,使命安全至关重要。

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