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Input-to-state stability of discrete time-delay systems with switching and impulsive signals

机译:具有切换和脉冲信号的离散时间延迟系统的输入到状态稳定性

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This paper investigates input-to-state stability (ISS) for a class of discrete time-delay systems with switching and impulsive signals. By the Lyapunov-Krasovskii technique, a dwell-time bound and delay bound are clearly presented to contribute to the ISS for discrete time-delay systems. A significant subsequence method of the switched and impulsive sequence will firstly be applied to study the ISS of discrete systems. Based on this method, some new conditions guaranteeing ISS are presented. Compared with the existing results on related problems, the obtained stability criteria are less conservative as it is only required for the specially designed Lyapunov function to be non-increasing along each of the defined subsequences of the switched and impulsive time. Examples of network control systems are presented to illustrate the main results at the end.
机译:本文调查了具有开关和冲动信号的一类离散时延系统的输入到状态稳定性(ISS)。 通过Lyapunov-Krasovskii技术,清楚地提出了停留时间绑定和延迟绑定,以促进用于离散时延系统的ISS。 首先将应用交换和脉冲序列的显着的后续方法来研究离散系统的IS。 根据这种方法,提出了一些新的条件。 与相关问题的现有结果相比,所获得的稳定性标准较少,因为仅需要专门设计的Lyapunov函数沿着切换和脉冲时间的每个定义子序列不增加。 呈现网络控制系统的示例以说明最终的主要结果。

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