基于磁悬浮平衡动量轮的卫星姿态稳定改进非线性积分滑模控制

Jingbo Wei, Kun Liu, G. Radice
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引用次数: 2

摘要

本文研究了只用一个磁悬浮平衡动量轮的卫星姿态稳定问题。首先,根据星载gmw服务任务模式中姿态误差较小的特点,定义并简化了星载gmw与卫星的耦合动力学模型;为了提高系统的动态性能,减小稳态误差,避免系统的抖振现象,提出了一种带有非线性积分函数和饱和函数的改进的无抖振积分滑模控制器。利用李亚普诺夫理论证明了边界层外的收敛特性和边界层内的终端收敛特性。数值仿真实例验证了所提控制器的有效性和适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modified nonlinear integral sliding mode control for satellite attitude stabilization using Magnetically Suspended Gimbaled Momentum Wheel
This paper treats the attitude stabilization problem for satellite using only one MSGMW (Magnetically Suspended Gimbaled Momentum Wheel). To start, the coupled dynamic model of satellite and MSGMW is defined and simplified based on the fact that the attitude errors are small during the mission mode that the MSGMW services. In order to improve the dynamic performance, reduce the steady state error and avoid the chattering phenomenon, a modified integral chattering-free sliding mode controller with a nonlinear integral function and a saturation function is introduced. Lyapunov theory is employed to prove the convergence characteristic outside the boundary layer and the terminal convergence characteristic inside the boundary layer. A numerical simulation example is employed to show the effectiveness and suitability of the proposed controller.
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