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State Feedback Guaranteed Cost Repetitive Control for Uncertain Discrete-Time Systems

机译:不确定离散系统的状态反馈保证成本重复控制

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This paper considers the problem of guaranteed cost repetitive control for uncertain discrete-time systems. The uncertainty in the system is assumed to be norm-bounded and time-varying. The objective is to develop a novel design method so that the closed-loop repetitive control system is quadratically stable and a certain bound of performance index is guaranteed for all admissible uncertainties. The state feedback control technique is used in the paper. While for the case that the states are not measurable, an observer-based control scheme is adopted. Sufficient conditions for the existence of guaranteed cost control law are derived in terms of linear matrix inequality (LMI). The control and observer gains are characterized by the feasible solutions to these LMIs. The optimal guaranteed cost control law is obtained efficiently by solving an optimization problem with LMI constraints using existing convex optimization algorithms. A simulation example is provided to illustrate the validity of the proposed method.
机译:本文考虑了不确定离散系统的保证成本重复控制问题。假定系统中的不确定性是有界的且随时间变化的。目的是开发一种新颖的设计方法,以使闭环重复控制系统二次稳定,并为所有容许的不确定性保证一定的性能指标范围。本文采用状态反馈控制技术。对于状态不可测量的情况,采用了基于观察者的控制方案。根据线性矩阵不等式(LMI)得出了存在保证成本控制法则的充分条件。对这些LMI的可行解决方案以控制增益和观察者增益为特征。通过使用现有凸优化算法解决具有LMI约束的优化问题,可以有效地获得最优保证成本控制律。仿真例子说明了所提方法的有效性。

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