Basin of attraction organization in infinite-dimensional delayed systems: A stochastic basin entropy approach.

Chaos

Instituto de Física, Facultad de Ciencias, Universidad de la República, Igua 4225, Montevideo 11400, Uruguay.

Published: December 2024

AI Article Synopsis

  • - The Mackey-Glass system is a complex delayed model with many stable and chaotic patterns, making long-term predictions difficult due to its infinite dimensionality and dependence on initial conditions.
  • - The paper introduces an extended method for analyzing these systems by incorporating basin entropy and sampling techniques to explore high-dimensional spaces, enhancing our understanding of attractor structures.
  • - The findings help quantify predictability based on initial conditions, providing insights into how trajectories evolve over time, which can be applied to other complex systems of infinite dimensions.

Article Abstract

The Mackey-Glass system is a paradigmatic example of a delayed model whose dynamics is particularly complex due to, among other factors, its multistability involving the coexistence of many periodic and chaotic attractors. The prediction of the long-term dynamics is especially challenging in these systems, where the dimensionality is infinite and initial conditions must be specified as a function in a finite time interval. In this paper, we extend the recently proposed basin entropy to randomly sample arbitrarily high-dimensional spaces. By complementing this stochastic approach with the basin fraction of the attractors in the initial conditions space, we can understand the structure of the basins of attraction and how they are intermixed. The results reported here allow us to quantify the predictability giving us an idea about the long-term evolution of trajectories as a function of the initial conditions. The tools employed can result very useful in the study of complex systems of infinite dimension.

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Source
http://dx.doi.org/10.1063/5.0234028DOI Listing

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