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Global Stabilization of Linearized Spacecraft Rendezvous System by Saturated Linear Feedback

机译:饱和线性反馈的线性化航天器交会系统的全局镇定

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摘要

The problem of global stabilization of the circular orbit spacecraft rendezvous system subject to actuator saturation is studied in this brief. Based on the linearized Clohessy–Wiltshire equations, a class of saturated linear state feedback controllers is designed by utilizing Lyapunov functions that are frequently used in the absolute stability theory. The global stability of the closed-loop system with the proposed saturated linear feedback is proved by providing explicit conditions on the parameters in the feedback gains. Optimal linear feedback gains are also discussed. The most significant advantages of the proposed controllers are that the controllers are linear and the global stability of the resulting closed-loop system can be guaranteed. Numerical simulations show the effectiveness of the proposed approaches.
机译:本文对致动器饱和的圆形轨道航天器交会系统的整体稳定问题进行了研究。基于线性化的Clohessy–Wiltshire方程,利用在绝对稳定性理论中经常使用的Lyapunov函数设计了一类饱和线性状态反馈控制器。通过为反馈增益中的参数提供明确的条件,可以证明具有建议的饱和线性反馈的闭环系统的全局稳定性。还讨论了最佳线性反馈增益。所提出的控制器的最显着优点是控制器是线性的,并且可以保证所得闭环系统的整体稳定性。数值模拟表明了所提出方法的有效性。

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