New fractional modelling and control analysis of the circumscribed self-excited spherical strange attractor
DOI10.1016/j.chaos.2022.111956zbMath1505.34100OpenAlexW4221096897WikidataQ114199127 ScholiaQ114199127MaRDI QIDQ2113158
Ali Akgül, Mohammad Partohaghighi
Publication date: 12 January 2023
Published in: Chaos, Solitons and Fractals (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.chaos.2022.111956
Fractional derivatives and integrals (26A33) Control problems involving ordinary differential equations (34H05) Simulation of dynamical systems (37M05) Complex behavior and chaotic systems of ordinary differential equations (34C28) Fractional ordinary differential equations (34A08)
Related Items (2)
Cites Work
- Erratum to: ``Simple chaotic flows with a line equilibrium
- A new no-equilibrium chaotic system and its topological horseshoe chaos
- A fractional-order form of a system with stable equilibria and its synchronization
- Mathematical analysis of dengue fever outbreak by novel fractional operators with field data
- Hyperchaotic behaviors, optimal control, and synchronization of a nonautonomous cardiac conduction system
- On a nonlinear dynamical system with both chaotic and nonchaotic behaviors: a new fractional analysis and control
- Modeling attractors of chaotic dynamical systems with fractal-fractional operators
- Fractal fractional derivative operator method on MCF-7 cell line dynamics
- Elementary quadratic chaotic flows with no equilibria
- Approximating hidden chaotic attractors via parameter switching
- Graphical Structure of Attraction Basins of Hidden Chaotic Attractors: The Rabinovich–Fabrikant System
- Integration by parts and its applications of a new nonlocal fractional derivative with Mittag-Leffler nonsingular kernel
- A unified difference-spectral method for time–space fractional diffusion equations
- A New Imprisoned Strange Attractor
- Generating a Chaotic System with One Stable Equilibrium
This page was built for publication: New fractional modelling and control analysis of the circumscribed self-excited spherical strange attractor