Analysis and control of the fractional chaotic Hopfield neural network
DOI10.1186/s13662-021-03285-0zbMath1494.34139OpenAlexW3165118020MaRDI QIDQ2166828
Pushali Trikha, Omar A. Almaghrabi, Emad E. Mahmoud, Lone Seth Jahanzaib
Publication date: 25 August 2022
Published in: Advances in Difference Equations (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1186/s13662-021-03285-0
Neural networks for/in biological studies, artificial life and related topics (92B20) Adaptive control/observation systems (93C40) Fractional derivatives and integrals (26A33) Fractional ordinary differential equations (34A08) Chaos control for problems involving ordinary differential equations (34H10)
Related Items (1)
Cites Work
- Unnamed Item
- Adaptive complex modified hybrid function projective synchronization of different dimensional complex chaos with uncertain complex parameters
- Determining Lyapunov exponents from a time series
- Hidden chaotic sets in a Hopfield neural system
- Dynamic analysis of a fractional order prey-predator interaction with harvesting
- Analysis, control, synchronization, and circuit design of a novel chaotic system
- Changing dynamics of the first, second and third approximations of the exponential chaotic system and their application in secure communication using synchronization
- Stability, bifurcation, and chaos control of a novel discrete-time model involving Allee effect and cannibalism
- A new study on the mathematical modelling of human liver with Caputo-Fabrizio fractional derivative
- Chaos control and solutions of fractional-order Malkus waterwheel model
- A hybrid Caputo fractional modeling for thermostat with hybrid boundary value conditions
- Dynamical analysis and chaos control of the fractional chaotic ecological model
- Dynamical analysis and chaos control in discrete-time prey-predator model
- A simple jerk-like system without equilibrium: asymmetric coexisting hidden attractors, bursting oscillation and double full Feigenbaum remerging trees
- Complex modified function projective synchronization of complex chaotic systems with known and unknown complex parameters
- Study of earth's changing polarity using compound difference synchronization
- Comparison of Different Methods for Computing Lyapunov Exponents
- Nonlinear Systems Analysis
- Analytical and numerical solutions of mathematical biology models: The Newell‐Whitehead‐Segel and Allen‐Cahn equations
- Neurons with graded response have collective computational properties like those of two-state neurons.
- Analysis of fractional differential equations
This page was built for publication: Analysis and control of the fractional chaotic Hopfield neural network