Adaptive Consensus of High Order Multi-Agent Systems with Unknown Nonlinear Dynamics
2013 ◽
Vol 275-277
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pp. 2654-2658
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In this paper, high order consensus problem of multi-agent systems with non-identical unknown nonlinear dynamics following an unknown and nonlinear leader is investigated in networks with fixed and switching topologies. By parameterizations of unknown nonlinear dynamics of agents in the system, neighbor-based adaptive consensus algorithms are proposed by incorporating consensus errors in addition to relative position feedback. Base on algebraic graph theory, Lyapunov theory, Riccati inequalities and PE condition, analysis of stability and parameter convergence of the proposed algorithm are conducted. Finally, a simulation in switching networks is worked out to illustrate the effectiveness of the theoretical results.
Active disturbance rejection consensus control of uncertain high-order nonlinear multi-agent systems
2019 ◽
Vol 42
(3)
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pp. 604-617
2013 ◽
Vol 278-280
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pp. 1413-1416
2013 ◽
Vol 8
(8)
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pp. 946-954
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2014 ◽
Vol 47
(3)
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pp. 7348-7353
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Keyword(s):
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2015 ◽
Vol 26
(1)
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pp. 154-173
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2017 ◽
Vol 99
◽
pp. 33-39
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Keyword(s):
Keyword(s):