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Hybrid stability analysis via extended small-gain theorem for networked cyber-physical systems with transmission delay

机译:具有传输延迟的网络网络地理系统的扩展小增益定理的混合稳定性分析

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This paper deals with hybrid stability analysis for networked cyber-physical systems with time delays and impulsive control. We use a thermodynamic framework to model the networked cyber-physical system (CPS) with a time delay and propose a hybrid controller to stabilize such a time-delay CPS. We consider the case where the time delay happened in the transmission process, thus the CPS has a nonlinear delayed part. Each subsystem in the networked CPS is assumed to evolve according to its controller and exchange delayed state information with its neighboring subsystems. Next, we extend the nonlinear input-to-state stability (ISS) small-gain theorem to networked CPS systems. Specifically, we render each subsystem in the networked CPS to have an interconnected ISS property first; and the input for the subsystem is the delayed information from its neighbors. Then hybrid stability of the whole networked CPS can be guaranteed based on this extended small-gain theorem.
机译:本文对随着时间的推迟和冲动控制的网络网络 - 物理系统进行了混合稳定性分析。我们使用热力学框架通过时间延迟模拟网络网络网络 - 物理系统(CPS),并提出混合控制器以稳定这种时滞CP。我们考虑在传输过程中发生的时间延迟的情况,因此CPS具有非线性延迟部分。假设网络CP中的每个子系统根据其控制器演变并与其相邻子系统交换延迟状态信息。接下来,我们将非线性输入到状态稳定性(ISS)的小增益定理扩展到网络CPS系统。具体而言,我们将网络CP中的每个子系统呈现为互连的ISS属性首先;并且子系统的输入是其邻居的延迟信息。然后可以基于这一扩展的小增益定理,保证整个网络CP的混合稳定性。

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