Abstract
In this paper, it is shown numerically that a class of fractional-order piece-wise continuous systems, which depend on a single real bifurcation parameter, have no zero Lyapunov exponents but can be chaotic or hyperchaotic with hidden attractors. Although not analytically proved, this conjecture is verified on several systems including a fractional-order piece-wise continuous hyperchaotic system, a piece-wise continuous chaotic Chen system, a piece-wise continuous variant of the chaotic Shimizu-Morioka system and a piece-wise continuous chaotic Sprott system. These systems are continuously approximated based on results of differential inclusions and selection theory, and numerically integrated with the Adams-Bashforth-Moulton method for fractional-order differential equations. It is believed that the obtained results are valid for many, if not most, fractional-order PWC systems.
| Original language | English |
|---|---|
| Pages (from-to) | 1061-1078 |
| Journal | Nonlinear Dynamics |
| Volume | 92 |
| Issue number | 3 |
| Online published | 8 Feb 2018 |
| DOIs | |
| Publication status | Published - May 2018 |
Research Keywords
- Chaotic system
- Continuous approximation
- Fractional-order piece-wise continuous system
- Hyperchaotic system
- Lyapunov exponent
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