English

Designing spontaneous behavioral switching via chaotic itinerancy

Robotics 2022-12-06 v1 Dynamical Systems Adaptation and Self-Organizing Systems

Abstract

Chaotic itinerancy is a frequently observed phenomenon in high-dimensional and nonlinear dynamical systems, and it is characterized by the random transitions among multiple quasi-attractors. Several studies have revealed that chaotic itinerancy has been observed in brain activity, and it is considered to play a critical role in the spontaneous, stable behavior generation of animals. Thus, chaotic itinerancy is a topic of great interest, particularly for neurorobotics researchers who wish to understand and implement autonomous behavioral controls for agents. However, it is generally difficult to gain control over high-dimensional nonlinear dynamical systems. Hence, the implementation of chaotic itinerancy has mainly been accomplished heuristically. In this study, we propose a novel way of implementing chaotic itinerancy reproducibly and at will in a generic high-dimensional chaotic system. In particular, we demonstrate that our method enables us to easily design both the trajectories of quasi-attractors and the transition rules among them simply by adjusting the limited number of system parameters and by utilizing the intrinsic high-dimensional chaos. Finally, we quantitatively discuss the validity and scope of application through the results of several numerical experiments.

Keywords

Cite

@article{arxiv.2002.08332,
  title  = {Designing spontaneous behavioral switching via chaotic itinerancy},
  author = {Katsuma Inoue and Kohei Nakajima and Yasuo Kuniyoshi},
  journal= {arXiv preprint arXiv:2002.08332},
  year   = {2022}
}

Comments

15 pages, 6 figures and 1 supplementary figure. Our supplementary videos are available in https://drive.google.com/drive/folders/10iB23OMHQfFIRejZstoXMJRpnpm3-3H5?usp=sharing

R2 v1 2026-06-23T13:47:08.345Z