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Robust adaptive sliding mode control for uncertain discrete-time systems with time delay

机译:不确定时滞离散系统的鲁棒自适应滑模控制

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This paper focuses on robust adaptive sliding mode control for discrete-time state-delay systems with mismatched uncertainties and external disturbances. The uncertainties and disturbances are assumed to be norm-bounded but the bound is not necessarily known. Sufficient conditions for the existence of linear sliding surfaces are derived within the linear matrix inequalities (LMIs) framework by employing the free weighting matrices proposed in He et al. (2008) [3], by which the corresponding adaptive controller is also designed to guarantee the state variables to converge into a residual set of the origin by estimating the unknown upper bound of the uncertainties and disturbances. Also, simulation results are presented to illustrate the effectiveness of the control strategy.
机译:本文针对具有不确定性和外部干扰的离散时间状态延迟系统,提出了鲁棒的自适应滑模控制方法。不确定性和干扰被认为是有范数的,但不一定是已知的。通过使用He等人提出的自由加权矩阵,可以在线性矩阵不等式(LMI)框架内得出存在线性滑动表面的充分条件。 (2008)[3],通过设计相应的自适应控制器,通过估计不确定性和扰动的未知上限,保证状态变量收敛到原点的残差集。此外,仿真结果也可以说明控制策略的有效性。

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