4.7 Article

Generating one to four-wing hidden attractors in a novel 4D no-equilibrium chaotic system with extreme multistability

Journal

CHAOS
Volume 28, Issue 1, Pages -

Publisher

AMER INST PHYSICS
DOI: 10.1063/1.5006214

Keywords

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Funding

  1. National Natural Science Foundations of China [61471310]
  2. Natural Science Foundations of Hunan Province, China [2015JJ2142]
  3. Research Foundation of Education Bureau of Hunan Province, China [17C1530]

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By using a simple state feedback controller in a three-dimensional chaotic system, a novel 4D chaotic system is derived in this paper. The system state equations are composed of nine terms including only one constant term. Depending on the different values of the constant term, this new proposed system has a line of equilibrium points or no equilibrium points. Compared with other similar chaotic systems, the newly presented system owns more abundant and complicated dynamic properties. What interests us is the observation that if the value of the constant term of the system is nonzero, it has no equilibria, and therefore, the Shil'nikov theorem is not suitable to verify the existence of chaos for the lack of heteroclinic or homoclinic trajectory. However, one-wing, two-wing, three-wing, and four-wing hidden attractors can be obtained from this new system. In addition, various coexisting hidden attractors are obtained and the complex transient transition behaviors are also observed. More interestingly, the unusual and striking dynamic behavior of the coexistence of infinitely many hidden attractors is revealed by selecting the different initial values of the system, which means that extreme multistability arises. The rich and complex hidden dynamic characteristics of this system are investigated by phase portraits, bifurcation diagrams, Lyapunov exponents, and so on. Finally, the new system is implemented by an electronic circuit. A very good agreement is observed between the experimental results and the numerical simulations of the same system on the Matlab platform. Published by AIP Publishing.

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