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Jacobi Stability of Simple Chaotic Systems with One Lyapunov Stable Equilibrium

Authors :
Huanhuan Tian
Changzhi Li
Biyu Chen
Aimin Liu
Source :
Journal of Computational and Nonlinear Dynamics.
Publication Year :
2021
Publisher :
ASME International, 2021.

Abstract

This paper presents Jacobi stability analysis of 23 simple chaotic systems with only one Lyapunov stable equilibrium by Kosambi-Cartan-Chern (KCC) theory, and analyzes the chaotic behavior of these systems from the geometric viewpoint. Different from Lyapunov stability, the unique equilibrium for each system is always Jacobi unstable. Moreover, the dynamical behaviors of deviation vector near equilibrium are discussed to reveal the onset of chaos for these 23 systems, and show furtherly the coexistence of unique Lyapunov stable equilibrium and chaotic attractor for each system geometrically. The obtaining results show that these chaotic systems are not robust to small perturbations of the equilibrium, indicating that the systems are extremely sensitive to internal environment. This reveals that the chaotic flows generated by these systems may be related to Jacobi instability of the equilibrium. It is hoped that the study of this paper can help reveal the true geometrical structure of hidden chaotic attractors.

Details

ISSN :
15551423 and 15551415
Database :
OpenAIRE
Journal :
Journal of Computational and Nonlinear Dynamics
Accession number :
edsair.doi...........fcf192848c907b90c2a0a484184a9cbe