Le You

Orcid: 0009-0007-8595-1305

According to our database1, Le You authored at least 12 papers between 2020 and 2024.

Collaborative distances:
  • Dijkstra number2 of four.
  • Erdős number3 of four.

Timeline

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Bibliography

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

GPU-accelerated Faster Mean Shift with euclidean distance metrics.
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


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