网络数据包
正确性
非周期图
传输(电信)
网络控制系统
计算机科学
控制理论(社会学)
数据包丢失
过程(计算)
控制系统
传输延迟
事件(粒子物理)
控制(管理)
算法
数学
计算机网络
工程类
电信
量子力学
操作系统
组合数学
电气工程
物理
人工智能
作者
Xunlin Zhu,Xiuxiu Zhang,Jumei Wei,Hai Lin
标识
DOI:10.1109/tac.2023.3250030
摘要
Event-triggered control (ETC) has been proposed in the networked control systems (NCSs) literature to reduce the need of data transmissions, and the main focus has been on the design of ETC mechanisms with a guaranteed positive minimum of interevent time (MIET), and hence avoiding Zeno phenomena. In this article, we propose a design of an aperiodic ETC mechanism for general nonlinear NCSs. In our setup, the communication network could introduce variable transmission delays, while data packets could get lost without acknowledgements. For this, we first introduce auxiliary variables dependent upon the transmission situations to capture the relationship between the number of successive packet dropouts, MIETs, transmission delays, and the number of successful packets being transmitted. Meanwhile, by designing appropriate jump rules of these variables, the changing process of the network-induced errors can be tracked. Then, we present a novel output-based dynamic ETC strategy that can simultaneously guarantee a finite $L_{p}$ -gain and a strictly positive lower bound despite the presence of packet losses and transmission delays. In particular, the mandatory limit of short delays can be avoided, and the transmission delays exceeding the positive MIETs are allowed. Finally, a numerical example is given to verify the correctness and effectiveness of the proposed control approach.
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