Consensus of linear multi-agent systems with fully distributed control gains under a general directed graph

Author(s):  
Jie Mei ◽  
Wei Ren ◽  
Jie Chen ◽  
Brian D. O. Anderson
2021 ◽  
Author(s):  
Jiancheng Zhang ◽  
Xinsheng Wang ◽  
Qi Cao

Abstract Linear multi-agent systems (MAS) have been studied a lot. Since nonlinear MAS with time delay and directed graph by using the event-triggered technique are seldom studied, the distributed control of a class of nonlinear leader-following MAS is considered in this paper. Firstly, we linearize the nonlinear MAS composed of N agents with directed graph by feedback, and transform the research object into a linear system. Furthermore, we proposed an event-triggered consensus algorithm for the leader-following MAS. Then we prove the consensus of the proposed algorithm by using related theorems. It is proved that the algorithm converges exponentially and avoids Zeno-behavior of triggering time sequences. Finally, we apply the designed event-triggered consensus algorithm to an engineering example. A simulation system is established in Matlab environment and the simulation example results verify the effectiveness of the proposed algorithm. It effectively reduces the number of communication among agents and achieves the consistency of control objectives.


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