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Design of a Modified Repetitive-control System with Dynamic Output-feedback Controller

机译:具有动态输出反馈控制器的改进型重复控制系统的设计

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A linear-matrix-inequality (LMI) based method is presented in this paper to design a modified repetitive-control system with a dynamic output-feedback controller for a class of strictly proper plants.Employing the continuous lifting technique,a continuous-discrete two-dimensional (2D) model is built that converts the system design problem into a stabilization problem for a continuous-discrete 2D system.The 2D control input contains the direct sum of the effects of control and learning,which allows us to adjust control and learning preferentially.Using the singular-value decomposition of the output matrix,an LMIbased algorithm is derived to design the parameters of the controllers and feedback gains.Two tuning parameters in the LMI justify the choice of 2D control gains and thus enable the preferential adjustment of control and learning.Finally,a numerical example demonstrates the validity of the method.
机译:本文提出了一种基于线性矩阵不等式(LMI)的方法,为一类严格适当的设备设计了带有动态输出反馈控制器的改进型重复控制系统。建立了二维(2D)模型,该模型将系统设计问题转换为连续离散2D系统的稳定问题。2D控制输入包含控制和学习效果的直接总和,这使我们能够调整控制和学习利用输出矩阵的奇异值分解,推导了基于LMI的算法来设计控制器的参数和反馈增益。LMI中的两个调整参数证明了2D控制增益的选择是合理的,从而可以实现对控制的优先调整。最后通过数值算例验证了该方法的有效性。

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