Title
Hybrid control design for Mittag-Leffler projective synchronization on FOQVNNs with multiple mixed delays and impulsive effects
Abstract
This article discusses the global Mittag-Leffler projective synchronization (GM-LPS) on fractional-order quaternion-valued neural networks (FOQVNNs) including mixed delays and impulses. The effects of various types of delay factors and impulses on Mittag-Leffler projective synchronization performance are simultaneously explored. Based on Banach contractive mapping principle, the existence result of solution to the considered systems is derived Applying the Lyapunov direct method, inequality analysis technique and generalized fractional Razumikhin theorem, the algebraic criteria for ensuring global Mittag-Leffler projective synchronization by designing the hybrid controllers are proposed. The result of algebraic inequality greatly reduces the computational complexity to some extent. Combining the different orders of Caputo derivative and MATLAB toolbox, the simulations are given to further validate the obtained results.
Year
DOI
Venue
2022
10.1016/j.matcom.2022.02.022
Mathematics and Computers in Simulation
Keywords
DocType
Volume
Impulsive effects,Hybrid control design,Time-varying delays,Leakage delays,Mittag-Leffler projective synchronization
Journal
197
ISSN
Citations 
PageRank 
0378-4754
0
0.34
References 
Authors
0
5
Name
Order
Citations
PageRank
Hai Zhang100.68
Yuhong Cheng200.68
Hongmei Zhang300.68
Weiwei Zhang4122.54
Jinde Cao511399733.03