Finite-time consensus of second-order nonlinear multi-agent systems with impulsive effects

This paper addresses finite-time consensus of second-order nonlinear multi-agent systems with impulsive effects. A control protocol contains neighborhood and self state feedback without sign functi...

[1]  Guanghui Wen,et al.  Distributed Tracking of Nonlinear Multiagent Systems Under Directed Switching Topology: An Observer-Based Protocol , 2017, IEEE Transactions on Systems, Man, and Cybernetics: Systems.

[2]  Jiang-Wen Xiao,et al.  Dynamic consensus of nonlinear time-delay multi-agent systems with input saturation: an impulsive control algorithm , 2019, Nonlinear Dynamics.

[3]  Haibo Ji,et al.  Finite-Time Consensus and Tracking Control of A Class of Nonlinear Multiagent Systems , 2018, IEEE Transactions on Automatic Control.

[4]  M. P. Aghababa,et al.  Finite-time synchronization of two different chaotic systems with unknown parameters via sliding mode technique , 2011 .

[5]  Junan Lu,et al.  Second-order consensus of multi-agent systems with nonlinear dynamics via impulsive control , 2014, Neurocomputing.

[6]  Xin Wang,et al.  Finite-time consensus of linear multi-agent system via distributed event-triggered strategy , 2018, J. Frankl. Inst..

[7]  Xiangyang Ji,et al.  Finite-time containment control of perturbed multi-agent systems based on sliding-mode control , 2018, Int. J. Syst. Sci..

[8]  Wenwu Yu,et al.  Distributed Higher Order Consensus Protocols in Multiagent Dynamical Systems , 2011, IEEE Transactions on Circuits and Systems I: Regular Papers.

[9]  Xiaofeng Liao,et al.  Second-order consensus in directed networks of identical nonlinear dynamics via impulsive control , 2016, Neurocomputing.

[10]  Jinde Cao,et al.  Consensus of Leader-Following Multiagent Systems: A Distributed Event-Triggered Impulsive Control Strategy , 2019, IEEE Transactions on Cybernetics.

[11]  Xinghuo Yu,et al.  Finite-Time Connectivity-Preserving Consensus for Second-Order Nonlinear Multiagent Systems , 2019, IEEE Transactions on Control of Network Systems.

[12]  Xin Chen,et al.  Consensus of Delayed Multi‐agent Systems via Intermittent Impulsive Control , 2017 .

[13]  Tingwen Huang,et al.  Finite-time Synchronization of Neural Networks with Multiple Proportional Delays via Non-chattering Control , 2018, International Journal of Control, Automation and Systems.

[14]  Mohammad Pourmahmood Aghababa,et al.  Synchronization of mechanical horizontal platform systems in finite time , 2012 .

[15]  Wenwu Yu,et al.  Second-Order Consensus for Multiagent Systems With Directed Topologies and Nonlinear Dynamics , 2010, IEEE Transactions on Systems, Man, and Cybernetics, Part B (Cybernetics).

[16]  Chuandong Li,et al.  Finite-time synchronization of complex networks with non-identical nodes and impulsive disturbances , 2018 .

[17]  Jinde Cao,et al.  Finite-time stochastic synchronization of complex networks , 2010 .

[18]  Jinde Cao,et al.  Finite-time synchronization of complex networks with nonidentical discontinuous nodes , 2013, Nonlinear Dynamics.

[19]  Xinping Guan,et al.  Finite-time consensus of nonlinear multi-agent system with prescribed performance , 2018 .

[20]  Yang Tang,et al.  Consensus of Linear Discrete-Time Multi-Agent Systems: A Low-Gain Distributed Impulsive Strategy , 2019, IEEE Transactions on Systems, Man, and Cybernetics: Systems.

[21]  Xinsong Yang,et al.  Finite-Time Synchronization of Coupled Networks With Markovian Topology and Impulsive Effects , 2016, IEEE Transactions on Automatic Control.

[22]  Duxin Chen,et al.  Distributed impulsive consensus of nonlinear multi-agent systems with input saturation , 2019, International Journal of Modern Physics C.

[23]  Guangming Xie,et al.  Second-order consensus of multi-agent systems in the cooperation-competition network with switching topologies: A time-delayed impulsive control approach , 2013, Syst. Control. Lett..

[24]  Guanghui Wen,et al.  Finite-Time Bipartite Consensus for Multi-Agent Systems on Directed Signed Networks , 2018, IEEE Transactions on Circuits and Systems I: Regular Papers.