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Multiple Spacecraft Formation Flying Control around Sun-Earth L_2 Libration Point

机译:围绕太阳地球L_2拉动点的多种航天器形成飞行控制

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摘要

Multiple spacecraft formation flying is an important concept for future deep-space exploration missions. It requires reliable techniques for the control of formation configuration. This paper addresses the control problem of spacecraft formation flying around the Sun-Earth L_2 libration point utilizing the framework of the circular restricted three-body problem (CR3BP). A leader/follower formation scheme consisting of one leader and three follower spacecraft is considered. The leader spacecraft is assumed to be in a fixed Halo orbit. The position of each follower spacecraft relative to the leader is controlled to be a constant using an active disturbance rejection control (ADRC) method. In this method, the unknown dynamics and external disturbances of the formation flying system are estimated by an extended state observer (ESO), and a nonlinear state error feedback control law is used to compensate for them in real time. Perturbative forces due to solar radiation pressure and the eccentric nature of the Earth's orbit are modeled as external disturbances. Numerical simulations and comparisons with an existing method show that desired formations are obtained with high accuracy using the proposed ADRC method.
机译:多个航天器形成飞行是未来深度空间勘探任务的重要概念。它需要可靠的技术来控制形成配置。本文利用循环限制的三体问题(CR3BP)的框架,解决了围绕太阳地球L_2拉动点飞行的航天器形成的控制问题。考虑了由一个领导者和三个追随者航天器组成的领导者/跟随者地层方案。假设领导者航天器是固定的光环轨道。使用主动扰动抑制控制(ADRC)方法,控制每个从动航天器相对于领导的位置相对于领导的位置。在该方法中,通过扩展状态观察者(ESO)估计了形成飞行系统的未知动力学和外部干扰,并且使用非线性状态误差反馈控制规律实时补偿它们。由于太阳辐射压力和地球轨道的偏心性,扰动力被建模为外部干扰。具有现有方法的数值模拟和比较表明,使用所提出的ADRC方法,以高精度获得所需的形成。

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