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Design of robust sliding-mode output-feedback control with suboptimal guaranteed cost

机译:具有次优保证成本的鲁棒滑模输出反馈控制设计

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摘要

The design approach of robust sliding-mode output-feedback (SMOF) controller in static nature is proposed for a class of uncertain systems with mismatched uncertainty in the state matrix. The main contribution of the approach is in that the quadratic performance can be optimised with guaranteed cost. At first, a new existence condition of linear sliding surface with guaranteed cost is derived, which only involves the original system parameters. Secondly, based on the existence condition, an iterative linear matrix inequality approach is proposed to optimise the quadratic performance on the sliding surface. At last, by using linear matrix inequalities approach, a design framework for synthesising the SMOF controller is presented, as a consequence, finite time convergence to the sliding mode can be guaranteed and, the quadratic performance can be optimised under input constraints. The superiority of the proposed method is verified by numeric examples.
机译:针对状态矩阵中具有不匹配不确定性的一类不确定系统,提出了一种静态的鲁棒滑模输出反馈控制器设计方法。该方法的主要贡献在于,可以在保证成本的情况下优化二次性能。首先,推导了具有保证成本的线性滑动面的新存在条件,该条件仅涉及原始系统参数。其次,基于存在条件,提出了一种迭代线性矩阵不等式方法,以优化滑动表面的二次性能。最后,利用线性矩阵不等式的方法,提出了一种用于合成SMOF控制器的设计框架,从而可以保证滑模的有限时间收敛,并且可以在输入约束下优化二次性能。数值算例验证了该方法的优越性。

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