Event‐triggered cooperative robust output regulation of minimum‐phase linear uncertain multi‐agent systems

Author:

Wu Jieshuai12ORCID,Lu Maobin12,Deng Fang12,Chen Jie13

Affiliation:

1. School of Automation Beijing Institute of Technology Beijing China

2. Beijing Institute of Technology Chongqing Innovation Center Chongqing China

3. School of Electronics and Information Engineering Tongji University Shanghai China

Abstract

AbstractIn this article, we investigate the event‐triggered cooperative robust output regulation problem of a class of minimum‐phase linear uncertain multi‐agent systems. In particular, we first propose a dynamic event‐triggered mechanism and an event‐triggered distributed output feedback control law. Then, by the internal model, the event‐triggered cooperative robust output regulation problem is converted into the event‐triggered cooperative robust stabilization problem of an augmented system composed of the distributed internal model and the original multi‐agent system. Next, we show that the event‐triggered cooperative robust stabilization problem can be solved by the proposed event‐triggered distributed output feedback control law together with a dynamic event‐triggered mechanism, and thus the event‐triggered cooperative robust output regulation problem is solved exactly in the sense that the tracking error of each subsystem converges to zero asymptotically while preventing the Zeno behavior from happening. Finally, we provide an example to illustrate the proposed control approach.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Chongqing Municipality

Publisher

Wiley

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