DocumentCode
1124055
Title
Theoretical Design and Circuit Implementation of Multidirectional Multi-Torus Chaotic Attractors
Author
Yu, Simin ; Lü, Jinhu ; Chen, Guanrong
Author_Institution
Guangdong Univ. of Technol., Guangzhou
Volume
54
Issue
9
fYear
2007
Firstpage
2087
Lastpage
2098
Abstract
This paper introduces a novel fourth-order double-torus chaotic circuit. Based on this basic circuit, a systematic theoretical design approach is proposed for generating 1-Dn torus, 2-D n times m-torus, 3-D n times m times I torus, and 4-D n times m times l times p torus chaotic attractors. This is the first autonomous circuit reported in the literature for generating multidirectional multi-torus (MDMT) chaotic attractors. The dynamical behaviors of these MDMT chaotic systems are further investigated, including equilibrium points, bifurcations, Lyapunov exponents, and Poincare maps. Theoretical analysis shows that the MDMT chaotic attractors can be generated by switching and displacing a basic linear circuit. Finally, a block circuit diagram is designed for hardware implementation of the MDMT chaotic attractors. This is also the first time in the literature to experimentally verify a maximal 1-D 20-torus, a maximal 2-D 5 times 5 torus, and a maximal 4-D 5 times 5 times 3 times 3 torus chaotic attractors.
Keywords
Lyapunov matrix equations; Poincare mapping; bifurcation; chaos; network synthesis; Lyapunov exponents; MDMT chaotic systems; Poincare maps; bifurcations; block circuit diagram; equilibrium points; fourth-order double-torus chaotic circuit; multidirectional multitorus chaotic attractors; Automation; Bifurcation; Cellular neural networks; Chaos; Cities and towns; Councils; Hardware; Linear circuits; Switching circuits; Technological innovation; Fourth-order double-torus chaotic circuit; multidirectional multi-torus (MDMT) attractor; saturated function series; step function series;
fLanguage
English
Journal_Title
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher
ieee
ISSN
1549-8328
Type
jour
DOI
10.1109/TCSI.2007.904651
Filename
4303312
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