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首页> 外文期刊>International Journal of Control, Automation, and Systems >Robust Stabilization of Decentralized Dynamic Surface Control for a Class of Interconnected Nonlinear Systems
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Robust Stabilization of Decentralized Dynamic Surface Control for a Class of Interconnected Nonlinear Systems

机译:一类互联非线性系统的分散动态表面控制的鲁棒镇定

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The analysis and design method for achieving robust stabilization of Decentralized Dynamic Surface Control (DDSC) is presented for a class of interconnected nonlinear systems. While a centralized design approach of DSC was developed in [1], the decentralized approach to deal with large-scale interconnected systems is proposed under the assumption that interconnected functions among subsystems are unknown but bounded. To provide a closed-loop form with provable stability properties, augmented error dynamics for N nonlinear subsystems with DDSC are derived. Then, the reachable set for errors of the closed-loop systems will be approximated numerically in the form of an ellipsoid in the framework of convex optimization. Finally, a numerical algorithm to calculate the L{sub}2 gain of the augmented error dynamics is presented.
机译:针对一类相互连接的非线性系统,提出了实现分散动态表面控制(DDSC)鲁棒稳定的分析和设计方法。尽管在[1]中开发了DSC的集中式设计方法,但在子系统之间的互连功能未知但有界的前提下,提出了一种用于处理大规模互连系统的分散方法。为了提供具有可证明的稳定性的闭环形式,导出了具有DDSC的N个非线性子系统的增加的误差动态。然后,在凸优化的框架内,以椭圆的形式对闭环系统的误差的可达集进行数值近似。最后,提出了一种数值算法,用于计算增强误差动态的L {sub} 2增益。

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