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Design of distributed robust control of 1D-spatially interconnected systems in the repetitive process setting

机译:重复过程设置中一维空间互连系统的分布式鲁棒控制设计

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In this paper we consider the H∞ controller design problem for uncertain differential linear repetitive processes via full order dynamic output feedback controllers. The existence condition of desired robust H∞ controllers is expressed as a feasibility problem of a linear matrix inequality (LMI). Then it is shown that the developed results can be applied to robust distributed controller design for 1D-spatially interconnected systems that are composed of several linear continuous-time subsystems, where each directly interacts with neighbouring subsystems. A simulation based case study on the model of a vehicle platoons system is given to demonstrate the feasibility and effectiveness of the new designs.
机译:在本文中,我们考虑了通过全阶动态输出反馈控制器的不确定微分线性重复过程的H∞控制器设计问题。期望鲁棒H∞控制器的存在条件表示为线性矩阵不等式(LMI)的可行性问题。然后表明,所开发的结果可以应用于一维空间互连系统的鲁棒分布式控制器设计,该系统由几个线性连续时间子系统组成,每个子系统都与相邻子系统直接交互。以车辆排系统模型为基础,基于仿真的案例研究证明了新设计的可行性和有效性。

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