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Adaptive finite time distributed 6-DOF synchronization control for spacecraft formation without velocity measurement

机译:用于航天器形成的自适应有限时间分布式6-DOF同步控制而不速度测量

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摘要

In this paper, the problem of distributed finite time six-degree-of-freedom (6-DOF) synchronization control for spacecraft formation flying (SFF) with the external disturbances and parameter uncertainties is investigated. Firstly, a continuous adaptive finite time distributed control protocol with full state feedback is proposed, which can overcome the chattering problem and reduce the convergence time in the reaching phase. Subsequently, an adaptive sliding mode observer with finite time convergence is designed to estimate the velocity information. Then a new observer-based continuous adaptive finite time distributed control protocol is designed. Rigorous proofs show that these two distributed controllers both can guarantee that the attitude and relative position tracking errors can converge to the origin within finite time rather than the bounded regions around the origins. Finally, the effectiveness of the designed distributed control protocols is demonstrated by simulation results.
机译:本文研究了与外部干扰和参数不确定性的航天器形成飞行(SFF)的分布式有限时间六自由度(6-DOF)同步控制的问题。 首先,提出了一种具有完整状态反馈的连续自适应有限时间分布式控制协议,这可以克服抖动问题并降低到达阶段的收敛时间。 随后,设计具有有限时间收敛的自适应滑动模式观察者以估计速度信息。 然后设计了一种新的基于观察者的连续自适应有限时间分布式控制协议。 严格的证据表明,这两个分布式控制器都可以保证姿态和相对位置跟踪错误可以在有限时间内收敛到原点,而不是来自起源周围的有界区域。 最后,通过仿真结果证明了设计的分布式控制协议的有效性。

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