Le You
Orcid: 0009-0007-8595-1305
According to our database1,
Le You
authored at least 13 papers
between 2020 and 2024.
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Bibliography
2024
Impulsive Formation Tracking of Nonlinear Fuzzy Multiagent Systems With Input Saturation Constraints.
IEEE Trans. Fuzzy Syst., October, 2024
Distributed Control for Nonlinear Time-Delay Multiagent Systems: Hybrid Saturation-Constraint Impulsive Approach.
IEEE Trans. Cybern., April, 2024
Impulsive Layered Control of Heterogeneous Multi-Agent Systems Under Limited Communication.
IEEE Trans. Ind. Informatics, March, 2024
Communication Limited Hybrid Impulsive Control of Fuzzy Time-Delay Multiagent Network.
IEEE Trans. Fuzzy Syst., January, 2024
2023
Control for Nonlinear Fuzzy Time-Delay Multiagent Systems: Two Kinds of Distributed Saturation-Constraint Impulsive Approach.
IEEE Trans. Fuzzy Syst., 2023
Impulsive Formation Control of Nonlinear Leader-Following Multi-agent Systems with Input Saturation.
Proceedings of the 6th IEEE International Conference on Industrial Cyber-Physical Systems, 2023
2022
Synchronization of Coupled Stochastic Reaction-Diffusion Neural Networks With Multiple Weights and Delays via Pinning Impulsive Control.
IEEE Trans. Netw. Sci. Eng., 2022
Distributed Edge Event-Triggered Control of Nonlinear Fuzzy Multiagent Systems With Saturation Constraint Hybrid Impulsive Protocols.
IEEE Trans. Fuzzy Syst., 2022
Exponential synchronisation of nonlinear multi-agent systems via distributed self-triggered hybrid control with virtual linked agents.
Int. J. Control, 2022
Proceedings of the 46th IEEE Annual Computers, Software, and Applications Conferenc, 2022
2021
Consensus of Nonlinear Multiagent Systems With Grouping Via State-Constraint Impulsive Protocols.
IEEE Trans. Cybern., 2021
Adaptive fuzzy leader-following consensus for nonlinear multi-agent systems via state-constraint impulsive control.
Int. J. Mach. Learn. Cybern., 2021
2020
Consensus of nonlinear multi-agent systems with fuzzy modelling uncertainties via state-constraint hybrid impulsive protocols.
Int. J. Mach. Learn. Cybern., 2020