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首页> 外文期刊>Journal of guidance, control, and dynamics >Tether Dynamics Analysis and Guidance and Control Design for Active Space-Debris Removal
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Tether Dynamics Analysis and Guidance and Control Design for Active Space-Debris Removal

机译:主动空间碎片清除的系链动力学分析及制导与控制设计

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摘要

Recent years have seen a steep increase in research being performed toward active space-debris removal. In particular, the ESA has proposed a mission in which a robotic chaser satellite would use a tether to interface with the derelict Envisat and deorbit it This study focuses on the preliminary design of a guidance and control system to achieve this, as well as on the influence of different tether parameters on mission performance. The lumped-mass model was used to model the tether, and the influence of the number of nodes used was investigated. Then, the mission performances of nine combinations of tether length, stiffness, and damping were evaluated. This was done using a sliding-mode controller for closed-loop relative orbit control and attitude control of the chaser satellite, the performance of which was compared against a linear-quadratic regulator. An open-loop throttle-control system was used for the main engines, for which three different thrust levels were considered. It was found that higher thrust levels with stiff tethers require significantly less mission propellant Furthermore, long tether designs offer the best performance in case of collision avoidance, if the main engines were to fail during a burn.
机译:近年来,主动清除空间碎片的研究急剧增加。特别是,欧空局提出了一项任务,其中机器人追逐卫星将使用系绳与被遗弃的Envisat交接并对其进行脱轨。该研究的重点是为实现这一目标的制导和控制系统的初步设计,以及系绳参数对任务性能的影响。使用集总质量模型对系链进行建模,并研究了所用节点数的影响。然后,评估了系绳长度,刚度和阻尼的九种组合的任务性能。这是通过使用滑模控制器完成对跟踪卫星的闭环相对轨道控制和姿态控制的,并将其性能与线性二次调节器进行比较。主发动机使用开环节气门控制系统,为此考虑了三种不同的推力水平。人们发现,带有刚性系链的较高推力水平所需的推进剂要少得多。此外,如果主引擎在燃烧过程中发生故障,则长系链设计可在避免碰撞的情况下提供最佳性能。

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