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Adaptive fuzzy mixed H-2/H-infinity, attitude control of spacecraft

机译:自适应模糊混合H-2/H-无穷远,航天器姿态控制

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This paper presents an adaptive fuzzy mixed H-2/H-infinity attitude control of nonlinear spacecraft systems with unknown or uncertain inertia matrix and external disturbances. Using an adaptive fuzzy approximation method, an uncertain nonlinear model is estimated. Then, by a mixed H-2 and H-infinity attitude control design, the effect of external disturbance and fuzzy approximation error on spacecraft attitude can be restrained and the tracking error as well as consumed energy of the controller is minimized. By virtue of the skew symmetric property of the spacecraft system and adequate choice of state variable transformation, this adaptive fuzzy control problem can be reduced to solving two algebraic equations instead of a pair of coupled time-varying differential equations. Finally, experimental simulation results are presented to demonstrate the effectiveness of the proposed design methods. References: 36
机译:本文提出了一种具有未知或不确定惯性矩阵和外部扰动的非线性航天器系统的自适应模糊H-2/H-无穷远混合姿态控制。采用自适应模糊逼近方法,对不确定非线性模型进行了估计。然后,通过H-2和H-无穷远混合姿态控制设计,可以抑制外界扰动和模糊逼近误差对航天器姿态的影响,使控制器的跟踪误差和消耗能量最小化。凭借航天器系统的偏对称特性和状态变量变换的充分选择,这种自适应模糊控制问题可以简化为求解两个代数方程,而不是一对耦合的时变微分方程。最后,通过实验仿真结果验证了所提设计方法的有效性。[参考文献: 36]

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