Effects of global warming, time delay and chaos control on the dynamics of a chaotic atmospheric propagation model within the frame of Caputo fractional operator
DOI10.1016/j.cnsns.2023.107657zbMath1530.34043OpenAlexW4388304184MaRDI QIDQ6144146
Arkaprovo Chakraborty, P. Veeresha
Publication date: 5 January 2024
Published in: Communications in Nonlinear Science and Numerical Simulation (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.cnsns.2023.107657
bifurcationtime-delaychaos controlLyapunov exponentCaputo fractional derivativemodified Lorenz-84 climate model
Topological structure of integral curves, singular points, limit cycles of ordinary differential equations (34C05) Bifurcation theory for ordinary differential equations (34C23) Stability of solutions to ordinary differential equations (34D20) Characteristic and Lyapunov exponents of ordinary differential equations (34D08) Qualitative investigation and simulation of ordinary differential equation models (34C60) Fractional ordinary differential equations (34A08) Chaos control for problems involving ordinary differential equations (34H10) Climate science and climate modeling (86A08)
Cites Work
- Unnamed Item
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- Control of a class of fractional-order chaotic systems via sliding mode
- Mittag-Leffler functions and their applications
- Determining Lyapunov exponents from a time series
- Lyapunov characteristic exponents for smooth dynamical systems and for Hamiltonian systems; a method for computing all of them. I: Theory
- Fractional differential equations. An introduction to fractional derivatives, fractional differential equations, to methods of their solution and some of their applications
- Dynamical analysis of a fractional-order predator-prey model incorporating a prey refuge
- A review of applications of fractional calculus in Earth system dynamics
- Chaos in Chen's system with a fractional order
- Chaos, fractional kinetics, and anomalous transport
- A predictor-corrector approach for the numerical solution of fractional differential equations
- The role of fractional calculus in modeling biological phenomena: a review
- Meteorological sequence prediction based on multivariate space-time auto regression model and fractional calculus grey model
- A new collection of real world applications of fractional calculus in science and engineering
- The role of the Mittag-Leffler function in fractional modeling
- Bifurcations and strange attractors in the Lorenz-84 climate model with seasonal forcing
- Admissible Perturbations of the Lorenz-84 Climate Model
- Further Insight into Bifurcation and Hybrid Control Tactics of a Chlorine Dioxide-Iodine-Malonic Acid Chemical Reaction Model Incorporating Delays
- Exploration on dynamics in a discrete predator–prey competitive model involving feedback controls
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