Tengda Wei

Orcid: 0000-0001-7868-8560

According to our database1, Tengda Wei authored at least 12 papers between 2014 and 2023.

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

Timeline

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Bibliography

2023
Stability of Delayed Reaction-Diffusion Neural-Network Models With Hybrid Impulses via Vector Lyapunov Function.
IEEE Trans. Neural Networks Learn. Syst., October, 2023

Fixed-Time and Predefined-Time Stability of Impulsive Systems.
IEEE CAA J. Autom. Sinica, April, 2023

Input-to-State Stability of Time-Delay Systems With Hybrid Impulses and Continuous Subdynamics Based on Vector Lyapunov Function.
IEEE Trans. Syst. Man Cybern. Syst., March, 2023

2022
Hybrid Event-Triggered Approach for Quasi-Consensus of Uncertain Multi-Agent Systems With Impulsive Protocols.
IEEE Trans. Circuits Syst. I Regul. Pap., 2022

2021
Instability of impulsive stochastic systems with application to image encryption.
Appl. Math. Comput., 2021

2019
Dynamical Behavior of Nonautonomous Stochastic Reaction-Diffusion Neural-Network Models.
IEEE Trans. Neural Networks Learn. Syst., 2019

Stability of stochastic impulsive reaction-diffusion neural networks with S-type distributed delays and its application to image encryption.
Neural Networks, 2019

Adaptive synchronization of stochastic complex dynamical networks and its application.
Neural Comput. Appl., 2019

2018
Robust Exponential Synchronization for Stochastic Delayed Neural Networks with Reaction-Diffusion Terms and Markovian Jumping Parameters.
Neural Process. Lett., 2018

2017
Existence, uniqueness and stability of mild solutions to stochastic reaction-diffusion Cohen-Grossberg neural networks with delays and Wiener processes.
Neurocomputing, 2017

2016
Registering Retinal Vessel Images from Local to Global via Multiscale and Multicycle Features.
Proceedings of the 2016 IEEE Conference on Computer Vision and Pattern Recognition Workshops, 2016

2014
Global Exponential Robust Stability of High-Order Hopfield Neural Networks with S-Type Distributed Time Delays.
J. Appl. Math., 2014


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