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首页> 外文期刊>Acta astronautica >Optimal spacecraft swarm reconfiguration through chief orbit refinement
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Optimal spacecraft swarm reconfiguration through chief orbit refinement

机译:通过首席轨道细化的最佳航天器群体重新配置

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摘要

This work presents a novel approach to minimizing delta-v for spacecraft swarm reconfiguration through refinement of the real or virtual chief spacecraft orbit, which is a closed orbit of arbitrary eccentricity. Given a desired relative motion configuration, the optimal target end-state of the swarm is solved for to provide minimum delta-v expenditure. The relative orbital elements (ROE) representation of relative motion is leveraged to produce two quadratically constrained linear programs (QCLPs). One program minimizes the sum of delta-v usage across the swarm, and the second minimizes the maximum delta-v usage among the swarm or co-orbiting spacecraft. The two objectives are designed to balance delta-v usage across the swarm to maximize mission lifetime. Furthermore, both optimization programs can be solved efficiently with interior point methods. While the minimization is applicable to any ROE set, the quasi-nonsingular ROE are exploited in this work to produce analytical solutions for arbitrary swarm geometry reconfigurations in non-equatorial orbits. If analytical solutions are not available, guidance is provided to minimize the effort required by convex optimization solvers in finding solutions. The delta-v savings enabled by the refinement of the swarm's reference orbit are demonstrated using a state-of-the-art solver that produces the minimum reachable delta-v for a given reconfiguration. Therefore, leveraging a small refinement in the reference orbit for swarm reconfiguration through a QCLP can provide significant delta-v savings, extending mission lifetime.
机译:这项工作提出了一种新颖的方法,可以通过实际或虚拟首席航天器轨道的改进来最小化Δ-v进行航天器群体重新配置,这是一个封闭轨道的任意偏心态的闭合轨道。鉴于所需的相对运动配置,Swarm的最佳目标端部状态被解决用于提供最小的Delta-V的支出。利用相对运动的相对轨道元素(ROE)表示,以产生两个二次约束的线性程序(QCLPS)。一个程序可最大限度地减少群中的Δ-V使用总和,第二个是最小化群体或共同轨道航天器之间的最大Δ-V使用。这两个目标旨在平衡群中的Delta-V使用,以最大化任务寿命。此外,可以用内点方法有效地解决两种优化程序。虽然最小化适用于任何ROE集合,但在这项工作中利用了准非缠结卵石,以在非赤道轨道中产生用于任意群的几何重新配置​​的分析解决方案。如果不可用分析解决方案,则提供指导以最大限度地减少凸优化求解器在寻找解决方案时所需的工作。使用群体参考轨道的细化启用的Delta-V节省了使用最先进的求解器来演示,该求解器为给定的重新配置产生最小可达Delta-V。因此,通过QCLP利用参考轨道的参考轨道中的小精制可以提供显着的Delta-V节省,扩展任务寿命。

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