Generalized multi-synchronization viewed as a multi-agent leader-following consensus problem

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The work presents the generalized multi-synchronization of strictly different chaotic systems problem as a multi-agent leader-following consensus problem with fixed and not strongly connected topology from a differential algebra point of view. This problem is solved by using the differential primitive element as a linear combination of state measurements and control inputs from which it is possible to construct a family of transformations to carry out the multi-agent systems to a Generalized Observability Canonical Form Multi-output (GOCFM). Moreover, a dynamic consensus protocol is designed such that the states of the followers asymptotically converge to the state of the leader.

论文关键词:Generalized multi-synchronization,Leader-following consensus,Generalized Observability Canonical Form Multi-output,Differential primitive element,Dynamic consensus protocol

论文评审过程:Received 26 September 2015, Revised 12 December 2015, Accepted 8 February 2016, Available online 1 March 2016, Version of Record 1 March 2016.

论文官网地址:https://doi.org/10.1016/j.amc.2016.02.017