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基于事件的两步传输机制用于具有随机不确定性的网络化T-S模糊系统的镇定

Event-Based Two-Step Transmission Mechanism for the Stabilization of Networked T-S Fuzzy Systems With Random Uncertainties.

作者信息

Gu Zhou, Fan Yujian, Sun Xiang, Xie Xiangpeng, Ahn Choon Ki

出版信息

IEEE Trans Cybern. 2024 Feb;54(2):1283-1293. doi: 10.1109/TCYB.2023.3337797. Epub 2024 Jan 17.

Abstract

This article studies an event-based two-step transmission mechanism (TSTM) in the control design for networked T-S fuzzy systems. The transmission task is achieved in two steps. Consecutive triggering packets are relabeled in the first step by applying a traditional event-triggered mechanism (ETM). Then a probabilistic approach is employed to determine which packet is a real release packet (RRP) in the second step. This event-based TSTM is particularly suitable for scenarios in which traditional ETMs are unable to determine which packets are redundant. By discarding most of the unnecessary data packets, especially when the system is tending toward stability, the burden on the network bandwidth is reduced. To establish a control strategy for T-S fuzzy-based nonlinear systems with random uncertainties, a new timing analysis technique is proposed. Additionally, the necessary conditions for a nonlinear system's mean-square asymptotic stability (MSAS) are derived. Finally, two practical applications demonstrate the effectiveness of the suggested transmission mechanism in networked T-S fuzzy systems.

摘要

本文研究了网络化T-S模糊系统控制设计中基于事件的两步传输机制(TSTM)。传输任务分两步完成。第一步,通过应用传统事件触发机制(ETM)对连续触发数据包进行重新标记。然后在第二步采用概率方法来确定哪个数据包是真正的释放数据包(RRP)。这种基于事件的TSTM特别适用于传统ETM无法确定哪些数据包是冗余的场景。通过丢弃大多数不必要的数据包,尤其是当系统趋于稳定时,可减轻网络带宽的负担。为了建立具有随机不确定性的基于T-S模糊的非线性系统的控制策略,提出了一种新的定时分析技术。此外,还推导了非线性系统均方渐近稳定性(MSAS)的必要条件。最后,两个实际应用证明了所提出的传输机制在网络化T-S模糊系统中的有效性。

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