基于坐标旋转变换意义下的三维全局耦合离散混沌系统对称与隐藏动力学的识别与分析

Translated title of the contribution: Recognition and analysis of symmetric dynamics and hidden dynamics of a three-dimensional global coupling discrete chaotic system based on the coordinate rotation transformation

姚潇悦, 李险峰*, 江俊, 梁以德, 王淑英

*Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

A three-dimensional chaotic map is created with global coupling by replacing the mean field with standard 1-D Logistic map. The complex dynamics and hidden dynamics of the coupled system are analyzed and identified by coordinate rotation transformation. The attractors and the bifurcation structure together with the coexisting attraction domain of the coupled system, are shown in respective diagram before and after utilizing the coordinate rotation transformation. The comparison among them shows that the projection of the attractors and the coexisting basin of attraction of the original coupled system on the rotated plane are of triangular symmetry. Co-dimension 1 and 2 bifurcation lines are superimposed on the two-parameter steady-state diagrams. It provides a way to recognize possible coexisting attractors in parameter domains. Both two-parameter steady state distribution diagram and bifurcation lines are independent of coordinate rotation transformation. However, their computation speed would be greatly accelerated with the help of orthogonal transformation.
Translated title of the contributionRecognition and analysis of symmetric dynamics and hidden dynamics of a three-dimensional global coupling discrete chaotic system based on the coordinate rotation transformation
Original languageChinese (Simplified)
Pages (from-to)113-119
Journal 四川大学学报(自然科学版)
Volume59
Issue number4
Online published6 Jun 2022
DOIs
Publication statusPublished - Jul 2022

Research Keywords

  • 混沌映射
  • 坐标旋转变换
  • 三角对称性
  • 识别
  • 投影
  • Chaotic map
  • Coordinate rotation transformation
  • Triangular symmetry
  • Recognition
  • Projection

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