[1] |
Fax J A, Murray R M. Information flow and cooperative control of vehicle formations[J]. IEEE Transactions on Automatic Control, 2004, 49(9):1465-1476.
doi: 10.1109/TAC.2004.834433
|
[2] |
Lin Z, Francis B, Maggiore M. Necessary and sufficient graphical conditions for formation control of unicycles[J]. IEEE Transactions on Automatic Control, 2005, 50(1):121-127.
doi: 10.1109/TAC.2004.841121
|
[3] |
Song Q, Liu F, Cao J D, et al. M-matrix strategies for pinning-controlled leader-following consensus in multiagent systems with nonlinear dynamic[J]. IEEE Transactions on Cybernetics, 2013, 43(6):1688-1697.
doi: 10.1109/TSMCB.2012.2227723
|
[4] |
DeGroot M H. Reaching a consensus[J]. Journal of the American Statistical Association, 1974, 69(345):118-121.
doi: 10.1080/01621459.1974.10480137
|
[5] |
Jadbabaie A, Lin J, Morse A S. Coordination of groups of mobile autonomous agents using nearest neighbor rules[J]. IEEE Transactions on Automatic Control, 2003, 48(6):988-1001.
doi: 10.1109/TAC.2003.812781
|
[6] |
Rehman A U, Rehan M, Awan N I. Leaderless adaptive output feedback consensus approach for one-sided Lipschitz multi-agents[J]. Journal of the Franklin Institute, 2020, 357(13):4993-5004.
|
[7] |
You X, Hua C, Li K, et al. Finite-time output feedback leader-following consensus for high-order time-varying nonlinear multi-agent systems[J]. Journal of the Franklin Institute, 2020, 357(12) 8082-8097.
doi: 10.1016/j.jfranklin.2020.05.048
|
[8] |
梁志鹏, 李杰雄, 江泓逸. 受限切换拓扑时延多智能体系统的指数一致性[J]. 电子科技, 2016, 29(10):62-68.
|
|
Liang Zhipeng, Li Jiexiong, Jiang Hongyi. Exponential consensus of multi-agent systems with time-varying delay under constrained switching topologies[J]. Electronic Science and Technology, 2016, 29(10):62-68.
|
[9] |
Yu Z, Yu S, Jiang H, et al. Observer-based consensus for multi-agent systems with partial adaptive dynamic protocols[J]. Nonlinear Analysis Hybrid Systems, 2019, 34(1):58-73.
doi: 10.1016/j.nahs.2019.05.005
|
[10] |
Yan C, Zhang W, Li X, et al. Observer-based time-varying formation tracking for one-sided Lipschitz nonlinear systems via adaptive protocol[J]. International Journal of Control Automation and Systems, 2020, 18(11):2753-2764.
doi: 10.1007/s12555-019-0884-9
|
[11] |
Zhang H, Chen J. Bipartite consensus of linear multi-agent systems over signed digraphs:An output feedback control approach[J]. IFAC Proceedings Volumes, 2014, 47(3):4681-4686.
doi: 10.3182/20140824-6-ZA-1003.00608
|
[12] |
Ma Q, Zhou G, Li E. Adaptive bipartite output consensus of heterogeneous linear multi-agent systems with antagonistic interactions[J]. Neurocomputing, 2020, 373(1): 50-55.
doi: 10.1016/j.neucom.2019.09.067
|
[13] |
王为科, 章伟, 宋芳, 等. 异质非线性多智能体系统时变编队控制[J]. 电子科技, 2021, 34(8):50-57.
|
|
Wang Weike, Zhang Wei, Song Fang, et al. Time-varying formation control for heterogeneous nonlinear multi- agents system[J]. Electronic Science and Technology, 2021, 34(8):50-57.
|
[14] |
Sun J, Geng Z, Lü Y, et al. Distributed adaptive consensus disturbance rejection for multi-agent systems on directed graphs[J]. IEEE Transactions on Control of Network Systems, 2018, 1(5):629-639.
|
[15] |
Yu W W, Chen G R, Cao M, et al. Second-order consensus for multiagent systems with directed topologies and nonlinear dynamics[J]. IEEE Transactions on Systems, Man, and Cybernetics-Part B: Cybernetics, 2010, 40(3):881-891.
doi: 10.1109/TSMCB.2009.2031624
|
[16] |
Almeida R, Malinowska A B, Odzijewicz T. Optimal leader-follower control for the fractional opinion formation model[J]. Journal of Optimization Theory and Applications, 2019, 182(3):1171-1185.
doi: 10.1007/s10957-018-1363-9
|
[17] |
Lv Y, Li Z, Duan Z. Fully distributed adaptive PI controllers for heterogeneous linear networks[J]. IEEE Transactions on Circuits and Systems-II: Express Briefs, 2018, 65(9):1209-1213.
doi: 10.1109/TCSII.8920
|
[18] |
Lv Y, Li Z, Duan Z. Distributed PI control of heterogeneous multiagent systems over directed graphs[J]. IEEE Transactions on Systems, Man, and Cybernetics: Systems, 2020, 50(4):1602-1609.
doi: 10.1109/TSMC.6221021
|