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  5. $H_{\infty}$ Consensus and Synchronization of Nonlinear Systems Based on A Novel Fuzzy Model

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Article
English
2013

$H_{\infty}$ Consensus and Synchronization of Nonlinear Systems Based on A Novel Fuzzy Model

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English
2013
IEEE Transactions on Cybernetics
Vol 43 (6)
DOI: 10.1109/tcyb.2013.2242197

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Hamid Reza Karimi
Hamid Reza Karimi

Politecnico di Milano

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Yan Zhao
Bing Li
Jiahu Qin
+2 more

Abstract

This paper investigates the H∞ consensus control problem of nonlinear multiagent systems under an arbitrary topological structure. A novel Takagi-Sukeno (T-S) fuzzy modeling method is proposed to describe the problem of nonlinear follower agents approaching a time-varying leader, i.e., the error dynamics between the follower agents and the leader, whose dynamics is evolving according to an isolated unforced nonlinear agent model, is described as a set of T-S fuzzy models. Based on the model, a leader-following consensus algorithm is designed so that, under an arbitrary network topology, all the follower agents reach consensus with the leader subject to external disturbances, preserving a guaranteed H(∞) performance level. In addition, we obtain a sufficient condition for choosing the pinned nodes to make the entire multiagent network reach consensus. Moreover, the fuzzy modeling method is extended to solve the synchronization problem of nonlinear systems, and a fuzzy H(∞) controller is designed so that two nonlinear systems reach synchronization with a prescribed H(∞) performance level. The controller design procedure is greatly simplified by utilization of the proposed fuzzy modeling method. Finally, numerical simulations on chaotic systems and arbitrary nonlinear functions are provided to illustrate the effectiveness of the obtained theoretical results.

How to cite this publication

Yan Zhao, Bing Li, Jiahu Qin, Huijun Gao, Hamid Reza Karimi (2013). $H_{\infty}$ Consensus and Synchronization of Nonlinear Systems Based on A Novel Fuzzy Model. IEEE Transactions on Cybernetics, 43(6), pp. 2157-2169, DOI: 10.1109/tcyb.2013.2242197.

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Publication Details

Type

Article

Year

2013

Authors

5

Datasets

0

Total Files

0

Language

English

Journal

IEEE Transactions on Cybernetics

DOI

10.1109/tcyb.2013.2242197

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