基于观测器的动态事件触发线性多智能体系统在输入饱和下的半全局二分一致性

Observer-Based Dynamic Event-Triggered Semiglobal Bipartite Consensus of Linear Multi-Agent Systems With Input Saturation

IEEE Transactions on Cybernetics · 2022
被引 171 · 同刊同年前 3%
ABS 3

中文导读

研究了竞争网络下线性多智能体系统在输入饱和时的半全局二分一致性问题,提出了基于观测器的动态事件触发控制协议,并证明了在固定拓扑和联合连通拓扑下均可实现一致性,同时排除Zeno行为。

Abstract

Observer-based dynamic event-triggered semiglobal bipartite consensus (SGBC) is investigated for linear multi-agent systems (MASs) with input saturation under a competitive network. Based on the estimated relative information and low-gain feedback technology, distributed dynamic event-triggered control (DETC) protocols are proposed for solving the observer-based SGBC problems for MASs under a fixed topology and a jointly connected topology, respectively. It is turned out that the SGBC of MASs can be achieved under the proposed protocols. By using gauge transformation and the Lyapunov theory, the bipartite consensus conditions are obtained. Moreover, Zeno behaviors will be excluded. Finally, two simulation examples are presented to verify the theoretical results efficiently.

多智能体系统事件触发控制二分一致性输入饱和线性系统