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Designing hyperchaotic systems with any desired number of positive lyapunov exponents via a simple model

  • Chaowen Shen
  • , Simin Yu
  • , Jinhu Lu
  • , Guanrong Chen
  • Guangdong University of Technology
  • CAS - Academy of Mathematics and System Sciences
  • City University of Hong Kong

Research output: Contribution to journalArticlepeer-review

Abstract

This paper introduces a new and unified approach for designing desirable dissipative hyperchaotic systems. Based on the anti-control principle of continuous-time systems, a nominal system of n (n ≥ 5) independent first-order linear differential equations are coupled through all state variables, making the controlled system be in a closed-loop cascade-coupling form, where each equation contains only two state variables therefore the system is quite simple. Based on this setting, a simple model for dissipative hyperchaotic systems is constructed, with an adjustable parameter which can ensure the dissipation of the system. In the closed-loop cascade-coupling form, it is shown that all the eigenvalues are symmetrically distributed in a circumferential manner. Consequently, a universal law is derived on the relationship of the number of positive Lyapunov exponents and the number of positive real parts of its Jacobian eigenvalues. For the above-mentioned simple model, the number of positive Lyapunov exponents for any n-dimensional dissipative hyperchaotic system is given by N= round ((n-1)/2), n ≥ 5. Therefore, in theory, the system can generate any desired number of positive Lyapunov exponents as long as the dimension of the system is sufficiently high. Thus, the proposed method provides a new approach for purposefully constructing desirable dissipative hyperchaotic systems. Finally, two examples are given to demonstrate the feasibility of the proposed design method.

Original languageEnglish
Article number6755574
Pages (from-to)2380-2389
Number of pages10
JournalIEEE Transactions on Circuits and Systems
Volume61
Issue number8
DOIs
StatePublished - Aug 2014
Externally publishedYes

Keywords

  • Circumferential distribution of eigenvalues
  • Lyapunov exponent
  • closed-loop cascade-coupling
  • dissipative system
  • hyperchaotic system

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