Ultra-low-voltage integrable electronic realization of integer- and fractional-order Liao's chaotic delayed neuron model
DOI10.1007/s00034-017-0615-5zbMath1402.94128OpenAlexW2736717804MaRDI QIDQ1627624
Farooq Ahmad Khanday, Costas Psychalinos, Mohammad Rafiq Dar, Nasir Ali Kant
Publication date: 30 November 2018
Published in: Circuits, Systems, and Signal Processing (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s00034-017-0615-5
chaosneural networksnonlinear dynamicscompanding techniquefractional-order circuitsLiao's chaotic delayed neuronlow-voltage analog implementation
Neural biology (92C20) Neural networks for/in biological studies, artificial life and related topics (92B20) Analytic circuit theory (94C05)
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Cites Work
- Dynamical analysis of fractional-order Rössler and modified Lorenz systems
- Stability of bifurcating periodic solutions for a single delayed inertial neuron model under periodic excitation
- Chaos in a three-variable model of an excitable cell
- Delay-dependent exponential stability analysis of bi-directional associative memory neural networks with time delay: an LMI approach
- Global exponential stability for a class of retarded functional differential equations with applications in neural networks
- Hopf bifurcation and chaos in a single delayed neuron equation with non-monotonic activation function
- Chaos and its synchronization in two-neuron systems with discrete delays
- Chaos in neurobiology
- Organization and identification of solutions in the time-delayed Mackey-Glass model
- Advances in Neural Networks – ISNN 2005
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