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Event-Triggered Output Synchronization in Master-Slave Lur’e Systems with Heterogeneous Dimensions

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Abstract

In this paper, the problem of event-triggered output synchronization is investigated in a class of master-slave Lur’e systems with heterogeneous dimensions. By designing an improved event-triggered strategy via sampled-data transmission, a novel stability criterion on the error system is formulated and the synchronization ones are presented in terms of linear matrix inequalities (LMIs). In particular, the proposed results can be easily checked and the controller gains can be achieved by solving the derived LMIs. Furthermore, the previously neglected information can be fully considered and the conservatism can be efficiently reduced. Finally, two numerical examples are given to illustrate the efficiency of the presented results.

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Acknowledgments

This work is supported by the National Natural Science Foundation of China (Nos. 61374116, 61403194, 61473079), Jiangsu Natural Science Foundation (Nos. BK20140836, BK20150888), Natural Science Foundation for Jiangsu’s Universities (No. 15KJB12004), and Fundamental Research Fund for Central Universities (Nos. NS2016030, NJ20160024).

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Li, T., Wang, T., Zhang, G. et al. Event-Triggered Output Synchronization in Master-Slave Lur’e Systems with Heterogeneous Dimensions. Circuits Syst Signal Process 36, 811–833 (2017). https://doi.org/10.1007/s00034-016-0319-2

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  • DOI: https://doi.org/10.1007/s00034-016-0319-2

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