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Decentralized H∞ Control of Interconnected Systems with Time-Varying Delays

机译:具有时变时滞的互联系统的分散H∞控制

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摘要

This paper focuses on the problem of delay dependent stability/stabilization of interconnected systems with time-varying delays. The approach is based on a new Lyapunov-Krasovskii functional. A decentralized delay-dependent stability analysis is performed to characterize linear matrix inequalities (LMIs) based on the conditions under which every local subsystem of the linear interconnected delay system is asymptotically stable. Then we design a decentralized state-feedback stabilization scheme such that the family of closed-loop feedback subsystems enjoys the delay-dependent asymptotic stability for each subsystem. The decentralized feedback gains are determined by convex optimization over LMIs. All the developed results are tested on a representative example and compared with some recent previous ones.
机译:本文着眼于时变时滞互连系统的时延依赖稳定性/稳定问题。该方法基于新的Lyapunov-Krasovskii功能。基于线性互连延迟系统的每个局部子系统渐近稳定的条件,进行了分散的依赖于延迟的稳定性分析,以表征线性矩阵不等式(LMI)。然后,我们设计了一种分散的状态反馈稳定方案,以使闭环反馈子系统系列享有每个子系统的依赖于延迟的渐近稳定性。分散的反馈增益由LMI上的凸优化确定。所有开发的结果都在一个具有代表性的示例上进行了测试,并与最近的一些比较。

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