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新型 LKF 方法在切换时滞系统 H 同步中的应用。

Novel LKF Method on H Synchronization of Switched Time-Delay Systems.

出版信息

IEEE Trans Cybern. 2023 Jul;53(7):4545-4554. doi: 10.1109/TCYB.2022.3208156. Epub 2023 Jun 15.

Abstract

This article investigates H global asymptotic synchronization (GAS) of switched nonlinear systems with delay. By introducing mode-dependent double event-triggering mechanisms (DETMs), the communication resources in both system-controller (S-C) channel and controller-actuator (C-A) channel are saved as much as possible. By designing a new multiple Lyapunov-Krasovskii functional (LKF) with time-varying matrices and developing novel analysis techniques such that the increment of the LKF at switching instant is smaller than one, not only the conservatism of obtained results is greatly reduced but also the nonweighted L -gain is convenient to be derived without using any conservative transformation. The exclusion of the Zeno behavior of the DETMs is proved. Synchronization criteria formulated by linear matrix inequalities (LMIs) are given, by which the control gains, event-triggering weights, as well as the minimum L -gain are simultaneously designed. Numerical examples demonstrate the low conservatism of the theoretical analysis. Meanwhile, image processing on the basis of the H GAS is provided to further illustrate the perfect performance.

摘要

本文研究了具有时滞的切换非线性系统的 H 全局渐近同步(GAS)。通过引入模态相关的双重事件触发机制(DETMs),尽可能节省系统-控制器(S-C)通道和控制器-执行器(C-A)通道中的通信资源。通过设计一个具有时变矩阵的新的多 Lyapunov-Krasovskii 函数(LKF),并采用新的分析技术,使得 LKF 在切换瞬间的增量小于 1,不仅大大降低了所得结果的保守性,而且无需使用任何保守变换,方便导出无权重 L -增益。证明了 DETMs 的零消耗行为的排除。给出了由线性矩阵不等式(LMIs)构成的同步判据,通过该判据同时设计了控制增益、事件触发权重以及最小 L -增益。数值示例证明了理论分析的低保守性。同时,基于 H GAS 的图像处理进一步说明了其完美的性能。

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