Analysis of the Chaotic Itinerancy Phenomenon using Entropy and Clustering

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Autori principali: Mierski, Nikodem, Pilarczyk, Paweł
Natura: Preprint
Pubblicazione: 2025
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author Mierski, Nikodem
Pilarczyk, Paweł
author_facet Mierski, Nikodem
Pilarczyk, Paweł
contents We introduce a new methodology for the analysis of the phenomenon of chaotic itinerancy in a dynamical system using the notion of entropy and a clustering algorithm. We determine systems likely to experience chaotic itinerancy by means of local Shannon entropy and local permutation entropy. In such systems, we find quasi-stable states (attractor ruins) and chaotic transition states using a density-based clustering algorithm. Our approach then focuses on examining the chaotic itinerancy dynamics through the characterization of residence times within these states and chaotic transitions between them with the help of some statistical tests. We demonstrate the effectiveness of these methods on the system of globally coupled logistic maps (GCM), a well-known model exhibiting chaotic itinerancy. In particular, we conduct comprehensive computations for a large number of parameters in the GCM system and algorithmically identify itinerant dynamics observed previously by Kaneko in numerical simulations as coherent and intermittent phases.
format Preprint
id arxiv_https___arxiv_org_abs_2507_22643
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Analysis of the Chaotic Itinerancy Phenomenon using Entropy and Clustering
Mierski, Nikodem
Pilarczyk, Paweł
Chaotic Dynamics
Dynamical Systems
37D45, 39A33, 68U99, 37M10, 94A17, 62H30
We introduce a new methodology for the analysis of the phenomenon of chaotic itinerancy in a dynamical system using the notion of entropy and a clustering algorithm. We determine systems likely to experience chaotic itinerancy by means of local Shannon entropy and local permutation entropy. In such systems, we find quasi-stable states (attractor ruins) and chaotic transition states using a density-based clustering algorithm. Our approach then focuses on examining the chaotic itinerancy dynamics through the characterization of residence times within these states and chaotic transitions between them with the help of some statistical tests. We demonstrate the effectiveness of these methods on the system of globally coupled logistic maps (GCM), a well-known model exhibiting chaotic itinerancy. In particular, we conduct comprehensive computations for a large number of parameters in the GCM system and algorithmically identify itinerant dynamics observed previously by Kaneko in numerical simulations as coherent and intermittent phases.
title Analysis of the Chaotic Itinerancy Phenomenon using Entropy and Clustering
topic Chaotic Dynamics
Dynamical Systems
37D45, 39A33, 68U99, 37M10, 94A17, 62H30
url https://arxiv.org/abs/2507.22643