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Predefined-Time Consensus Tracking of Second-Order Multiagent Systems
DOI:10.1109/TSMC.2019.2916257.png)
摘要
En 中文
In this paper, the predefined-time consensus tracking problem of second-order multiagent systems (MASs) is investigated. A distributed observer is presented to estimate the tracking error for each follower within predefined time. A novel sliding surface is constructed to ensure predefined-time system convergence along the sliding surface and a terminal sliding mode consensus protocol is presented to overcome singularity problem and achieve leader-following consensus within predefined time. It is mathematically proved that the followers' states can track the leader's trajectory within predefined time. In particular, the settling time bound is directly related to tunable parameters, which facilitates the control protocol design to meet the desired convergence time requirement. Besides, the estimation bound for convergence time is less conservative than some existing fixed-time consensus protocols. The effectiveness of the proposed method is verified by the consensus tracking control for networked single-link robotic manipulators.
Keyword:
Convergence
Protocols
Stability analysis
Asymptotic stability
Power system stability
Tuning
Estimation
Consensus tracking
distributed observer
multiagent systems (MASs)
nonsingular terminal sliding mode control
predefined-time consensus
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期刊
IF:
10.5
论文数:
1.1W
被引数:
5.0W
机构
引用论文
Distributed Optimization for Multiagent Systems: An Edge-Based Fixed-Time Consensus Approach多代理系统的分布式优化: 基于边缘的固定时间共识方法
Bridging the Fields of Solar Cell and Battery Research to Develop High-Performance Anodes for Photoelectrochemical Cells and Metal Ion Batteries
Challenges
IF0
Nonsingular fixed-time consensus tracking for second-order multi-agent networks二阶多智能体网络的非奇异固定时间一致性跟踪
AUTOMATICA
IF5.9

