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Robust design of high order repetitive controllers under control saturation

机译:控制饱和下高阶重复控制器的鲁棒设计

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This paper presents a methodology to simultaneously design a high order repetitive controller (HORC) and an anti-windup compensator for systems subject to control saturation and parametric uncertainties. With the proposed structure it is possible to ensure a certain level of steady-state tracking and/or rejection performance when dealing with uncertain periodic signals. Based on a modified state-feedback formulation of the HORC and an static anti-windup structure, linear matrix inequality (LMI) conditions are proposed to guarantee closed-loop stability provided that the state trajectory and the reference/disturbance signals are inside admissible sets. A systematic procedure to determine upper bounds for the system initial conditions and maximum reference/disturbance values is also proposed. A numerical example illustrates the method.
机译:本文提出了一种方法,用于同时为受控制饱和和参数不确定性影响的系统设计高阶重复控制器(HORC)和抗饱和补偿器。利用所提出的结构,当处理不确定的周期性信号时,可以确保一定水平的稳态跟踪和/或抑制性能。基于HORC的改进状态反馈公式和静态抗饱和结构,提出了线性矩阵不等式(LMI)条件,以保证闭环稳定性,前提是状态轨迹和参考/扰动信号在允许的范围内。还提出了确定系统初始条件和最大参考/扰动值上限的系统程序。数值示例说明了该方法。

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