Chaotifying delayed recurrent neural networks via impulsive effects
DOI10.1063/1.4941852zbMath1390.37062OpenAlexW2287588516WikidataQ50701352 ScholiaQ50701352MaRDI QIDQ4563840
Publication date: 4 June 2018
Published in: Chaos: An Interdisciplinary Journal of Nonlinear Science (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1063/1.4941852
Neural networks for/in biological studies, artificial life and related topics (92B20) Strange attractors, chaotic dynamics of systems with hyperbolic behavior (37D45) Dynamical systems involving transformations and group actions with special properties (minimality, distality, proximality, expansivity, etc.) (37B05) Chaos control for problems involving ordinary differential equations (34H10)
Cites Work
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- Chaotification for a class of cellular neural networks with distributed delays
- Complex dynamics in a linear impulsive system
- Chaotification of discrete dynamical systems via impulsive control
- Horseshoe chaos in a class of simple Hopfield neural networks
- Stability and periodicity in delayed cellular neural networks with impulsive effects
- Global robust asymptotic stability of variable-time impulsive BAM neural networks
- Chaos and its control in an impulsive differential system
- Horseshoe chaos and topological entropy estimate in a simple power system
- On the abundance of aperiodic behaviour for maps on the interval
- Dynamics in one dimension
- Snap-back repellers imply chaos in \(\mathbb{R}^n\)
- Introduction to functional differential equations
- Chaos and asymptotical stability in discrete-time neural networks
- Desynchronization and chaotification of nonlinear dynamical systems
- Chaotifying a continuous-time system near a stable limit cycle.
- On generalized synchronization of spatial chaos.
- On the Marotto-Li-Chen theorem and its application to chaotification of multi-dimensional discrete dynamical systems
- Periodic solution for state-dependent impulsive shunting inhibitory CNNs with time-varying delays
- Generating two simultaneously chaotic attractors with a switching piecewise-linear controller
- Exponential stability of linear delay impulsive differential equations
- Chaos of a new class of Hopfield neural networks
- Li-Yorke chaos in a spatiotemporal chaotic system
- Existence and stability of almost periodic solutions for shunting inhibitory cellular neural networks with time-varying delays
- Description of complex dynamics in a class of impulsive differential equations
- Li-Yorke chaos in the system with impacts
- Discrete chaos in Banach spaces
- Anticontrol of chaos in continuous-time systems via time-delay feedback
- Shunting inhibitory cellular neural networks with chaotic external inputs
- Absolute stability of global pattern formation and parallel memory storage by competitive neural networks
- Chaos in neurobiology
- Periodic solution and chaotic strange attractor for shunting inhibitory cellular neural networks with impulses
- Principles of Discontinuous Dynamical Systems
- Cellular neural networks: theory
- Period Three Implies Chaos
- Shunting inhibitory cellular neural networks: derivation and stability analysis
- FEEDBACK CONTROL OF LYAPUNOV EXPONENTS FOR DISCRETE-TIME DYNAMICAL SYSTEMS
- TUTORIAL ON NEUROBIOLOGY: FROM SINGLE NEURONS TO BRAIN CHAOS
- Li–Yorke sensitivity
- Generating chaos by an Elman network
- Stability Criteria for Impulsive Systems With Time Delay and Unstable System Matrices
- ON SPATIAL PERIODIC ORBITS AND SPATIAL CHAOS
- GLOBAL SYNCHRONIZATION OF COUPLED DELAYED NEURAL NETWORKS AND APPLICATIONS TO CHAOTIC CNN MODELS
- CHAOTIFYING A CONTINUOUS-TIME SYSTEM VIA IMPULSIVE INPUT
- Introduction to Applied Nonlinear Dynamical Systems and Chaos
- Feedback Anticontrol of Discrete Chaos
- Synchronization in chaotic systems
- Generating chaos for discrete time-delayed systems via impulsive control
- Introduction to anti-control of discrete chaos: theory and applications
- CHAOTIFICATION OF DISCRETE DYNAMICAL SYSTEMS GOVERNED BY CONTINUOUS MAPS
- Generating chaotic attractors with multiple merged basins of attraction: a switching piecewise-linear control approach
- Neural networks and physical systems with emergent collective computational abilities.
- CHAOTIFICATION VIA ARBITRARILY SMALL FEEDBACK CONTROLS: THEORY, METHOD, AND APPLICATIONS
- CHAOS COMMUNICATION OVER NOISY CHANNELS
- Li–Yorke chaos in higher dimensions: a review
- Nonsmooth functions in generalized synchronization of chaos
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