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Dynamic sliding mode-based attitude stabilisation control of satellites with angular velocity and control constraints

机译:基于动态滑动模式的卫星角速度和控制约束的卫星姿态稳定控制

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摘要

This work presents a novel control approach to the attitude stabilisation problem of rigid satellites with external disturbance, control constraint, and angular velocity constraint. The controller is developed in the framework of dynamic sliding mode control. A dynamic sliding mode surface is preliminarily chosen, and then a structure-simple sliding mode control law is synthesised. It is proved that the proposed control law can successfully accomplish the attitude stabilisation manoeuvre. The attitude is exponentially stabilised, and the angular velocity is stabilised with an exponential rate to a ball with a small radius. In comparison with the static sliding mode surface-based controllers, the proposed approach can provide a fast convergence rate. The system convergence time can be shortened by dynamically updating the control parameters in the sliding mode. Simulation results are presented to examine the feasibility of the presented solution.
机译:该工作提出了一种新的控制方法,具有外部干扰,控制约束和角速度约束的刚性卫星的姿态稳定问题。 控制器是在动态滑动模式控制框架中开发的。 预先选择动态滑动模式表面,然后合成结构简单的滑动模式控制规律。 事实证明,拟议的控制法可以成功完成态度稳定机动。 姿态是指数稳定的,并且角速度以指数速率稳定到具有小半径的球。 与静态滑动模式基于表面的控制器相比,所提出的方法可以提供快速的收敛速率。 通过在滑动模式中动态更新控制参数,可以缩短系统收敛时间。 提出了仿真结果来检查所提出的解决方案的可行性。

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