Dynamics and complexity analysis of fractional-order chaotic systems with line equilibrium based on Adomian decomposition
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Publication:2223235
DOI10.1155/2020/5710765zbMath1453.37030OpenAlexW3094601437MaRDI QIDQ2223235
Su Lu, Lin Zhong, WenPeng Dai, Lijun Qiu, Heng Chen, Tengfei Lei
Publication date: 28 January 2021
Published in: Complexity (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1155/2020/5710765
Strange attractors, chaotic dynamics of systems with hyperbolic behavior (37D45) Complex behavior and chaotic systems of ordinary differential equations (34C28)
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Cites Work
- Linearization of the Lorenz system
- Conditional symmetry: bond for attractor growing
- Mathematical foundation of a new complexity measure
- Existence of attractor and control of a 3D differential system
- Chaos and symbol complexity in a conformable fractional-order memcapacitor system
- A predictor-corrector approach for the numerical solution of fractional differential equations
- Short memory principle and a predictor-corrector approach for fractional differential equations
- Chaotic hyperjerk systems
- A general formulation and solution scheme for fractional optimal control problems
- On the Appearance of the Fractional Derivative in the Behavior of Real Materials
- A Simple Chaotic Flow with a Plane of Equilibria
- Fractional dynamics of coupled oscillators with long-range interaction
- Fractal system as represented by singularity function
- A novel method based on the pseudo-orbits to calculate the largest Lyapunov exponent from chaotic equations
- Identifying the linear region based on machine learning to calculate the largest Lyapunov exponent from chaotic time series
- A New Hypersensitive Hyperchaotic System with No Equilibria
- Dynamics and complexity analysis of the conformable fractional‐order two‐machine interconnected power system
- Doubling the coexisting attractors
- A review of the decomposition method and some recent results for nonlinear equations
- A new approach to nonlinear partial differential equations
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