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Consensus tracking control for a class of general linear hybrid multi-agent systems: A model-free approach.

, , , and . Autom., (October 2023)

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On Consensus of Multiagent Systems With Input Saturation: Fully Distributed Adaptive Antiwindup Protocol Design Approach., , , , and . IEEE Trans. Control. Netw. Syst., 7 (3): 1127-1139 (2020)A Joint Selective Mechanism for Abstractive Sentence Summarization., and . ACML, volume 95 of Proceedings of Machine Learning Research, page 756-769. PMLR, (2018)Safe Consensus Tracking With Guaranteed Full State and Input Constraints: A Control Barrier Function-Based Approach., , and . IEEE Trans. Autom. Control., 68 (12): 8075-8081 (December 2023)Joint Robustness of Time-Varying Networks and Its Applications to Resilient Consensus., , , , and . IEEE Trans. Autom. Control., 68 (11): 6466-6480 (November 2023)Velocity and Input Constrained Coordination of Second-Order Multi-Agent Systems With Relative Output Information., , , , and . IEEE Trans. Netw. Sci. Eng., 7 (3): 1925-1938 (2020)Consensus of Multiple Lur'e Systems for Directed Communication Graphs with Distributed Adaptive Relative Output Feedback Protocol., , , , and . ICIT, page 1430-1435. IEEE, (2019)Observer-based finite-time coordinated tracking for high-order integrator systems with matched uncertainties under directed communication graphs., and . ICCA, page 880-885. IEEE, (2014)Robust consensus tracking for heterogeneous linear multi-agent systems with disturbances., , , and . ASCC, page 729-734. IEEE, (2017)A Novel Class of Distributed Fixed-Time Consensus Protocols for Second-Order Nonlinear and Disturbed Multi-Agent Systems., , , and . IEEE Trans. Network Science and Engineering, 6 (4): 760-772 (2019)Robust finite-time containment control of general linear multi-agent systems under directed communication graphs., and . J. Frankl. Inst., 353 (12): 2670-2689 (2016)