不确定非线性多智能体系统基于事件的预设时间输出调节

Event-Based Prescribed-Time Output Regulation of Uncertain Nonlinear Multiagent Systems

IEEE Transactions on Cybernetics · 2025
被引 15 · 同刊同年前 6%
ABS 3

中文导读

针对通信资源有限的不确定非线性多智能体系统,提出一种基于事件的分布式神经自适应预设时间控制方案,使系统输出在用户设定的时间内收敛到可调区域,并避免Zeno行为。

Abstract

The prescribed-time output regulation problem is investigated for a class of uncertain nonlinear multiagent systems (MASs) subject to limited communication resources. To address this challenge, an event-based distributed neuro-adaptive prescribed-time control scheme comprising distributed prescribed-time observers, a dynamic event-triggered mechanism (DETM), and neuro-adaptive prescribed-time controllers is developed. Specifically, a distributed prescribed-time observer is constructed for each agent using event-based communications to estimate the states of the exosystem. The constructed observer operates without requiring prior knowledge of the exosystem dynamics or global information, ensuring that observation errors converge to a small neighborhood around zero within a user-determined time interval. Additionally, the incorporation of the DETM guarantees a positive lower bound on the interexecution intervals, thereby alleviating the communication demands. Building on this observer, neuro-adaptive prescribed-time controllers are derived for each agent, capable of maintaining the system states within a user-defined compact set without the need for prior knowledge of the initial system states. It is demonstrated that the regulated outputs converge to a region arbitrarily tuned by the user within a prescribed time, with all signals remaining bounded and Zeno behavior eliminated. Finally, two examples are exhibited to verify the effectiveness of the obtained results.

多智能体系统非线性系统事件触发控制自适应控制预设时间控制