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具有准周期时滞系统中的层流混沌。

Laminar chaos in systems with quasiperiodic delay.

机构信息

Institute of Physics, Chemnitz University of Technology, 09107 Chemnitz, Germany.

ICM - Institute for Mechanical and Industrial Engineering, 09117 Chemnitz, Germany.

出版信息

Phys Rev E. 2023 Jan;107(1-1):014205. doi: 10.1103/PhysRevE.107.014205.

Abstract

A type of chaos called laminar chaos was found in singularly perturbed dynamical systems with periodic time-varying delay [Phys. Rev. Lett. 120, 084102 (2018)]0031-900710.1103/PhysRevLett.120.084102. It is characterized by nearly constant laminar phases, which are periodically interrupted by irregular bursts, where the intensity levels of the laminar phases vary chaotically from phase to phase. In this paper, we demonstrate that laminar chaos can also be observed in systems with quasiperiodic delay, where we generalize the concept of conservative and dissipative delays to such systems. It turns out that the durations of the laminar phases vary quasiperiodically and follow the dynamics of a torus map in contrast to the periodic variation observed for periodic delay. Theoretical and numerical results indicate that introducing a quasiperiodic delay modulation into a time-delay system can lead to a giant reduction of the dimension of the chaotic attractors. By varying the mean delay and keeping other parameters fixed, we found that the Kaplan-Yorke dimension is modulated quasiperiodically over several orders of magnitudes, where the dynamics switches quasiperiodically between different types of high- and low-dimensional types of chaos.

摘要

一种称为层流混沌的混沌在具有周期时变延迟的奇异摄动动力系统中被发现[Phys. Rev. Lett. 120, 084102 (2018)]0031-900710.1103/PhysRevLett.120.084102。它的特征是几乎恒定的层流相,这些层流相被不规则的爆发周期性地打断,其中层流相的强度水平从一相到另一相随机变化。在本文中,我们证明了层流混沌也可以在具有准周期延迟的系统中观察到,我们将保守和耗散延迟的概念推广到这样的系统中。结果表明,层流相的持续时间准周期变化,并遵循环面映射的动力学,而不是对于周期性延迟观察到的周期性变化。理论和数值结果表明,在时滞系统中引入准周期延迟调制可以导致混沌吸引子的维数大大降低。通过改变平均延迟并保持其他参数固定,我们发现Kaplan-Yorke 维数在几个数量级上准周期地调制,其中动力学在不同类型的高维和低维混沌之间准周期地切换。

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