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LMI relaxations for robust gain-scheduled control of uncertain linear parameter varying systems

机译:LMI放宽,用于强大的不确定线性参数变化系统的增益预定控制

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This study deals with the problem of robust gain-scheduled dynamic output feedback control for uncertain discrete-time linear parameter varying systems. The obtained controller guarantees an upper bound on the induced $l_2$l2-gain performance of the closed-loop system. The system matrices are assumed to depend polynomially on both the scheduling and uncertain parameters which are supposed to belong to intervals with a priori known bounds. To formulate the design problem in a linear matrix inequality (LMI) setting, a required auxiliary matrix is initially determined using a necessary condition for finding a gain-scheduled controller by the proposed method. Then, a robust gain-scheduled controller is designed by LMI conditions combined with a scalar search using the obtained auxiliary matrix. The method is applied to an inverted pendulum on a cart to illustrate the benefits and applicability of the proposed method.
机译:该研究涉及不确定离散时间线性参数变化系统的强大增益调度动态输出反馈控制的问题。所获得的控制器保证了诱导的$ L_2 $ L2-GAIN性能的上限。假设系统矩阵依赖于试验和不确定参数,该调度和不确定参数应该属于具有先验已知范围的间隔。为了在线性矩阵不等式(LMI)设置中的设计问题,最初使用所提出的方法找到增益调度控制器的必要条件来确定所需的辅助矩阵。然后,由使用所获得的辅助矩阵与标量搜索组合的LMI条件设计了一种强大的增益调度控制器。该方法应用于推车上的倒摆动以说明所提出的方法的益处和适用性。

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