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A novel chaotic system with one source and two saddle-foci in Hopfield neural networks |
Chen Peng-Fei(陈鹏飞)a)b)†, Chen Zeng-Qiang(陈增强)a)‡, and Wu Wen-Juan(吴文娟)a) |
a Department of Automation, Nankai University, Tianjin 300071, China; b The Institute of Military Transportation, Tianjin 300161, China |
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Abstract This paper presents the finding of a novel chaotic system with one source and two saddle-foci in a simple three-dimensional (3D) autonomous continuous time Hopfield neural network. In particular, the system with one source and two saddle-foci has a chaotic attractor and a periodic attractor with different initial points, which has rarely been reported in 3D autonomous systems. The complex dynamical behaviours of the system are further investigated by means of a Lyapunov exponent spectrum, phase portraits and bifurcation analysis. By virtue of a result of horseshoe theory in dynamical systems, this paper presents rigorous computer-assisted verifications for the existence of a horseshoe in the system for a certain parameter.
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Received: 14 July 2009
Revised: 24 July 2009
Accepted manuscript online:
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PACS:
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05.45.-a
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(Nonlinear dynamics and chaos)
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02.30.Oz
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(Bifurcation theory)
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07.05.Mh
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(Neural networks, fuzzy logic, artificial intelligence)
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Fund: Project supported by the National
Natural Science Foundation of China (Grant No.~60774088), the
Program for New Century Excellent Talents in University of China
(NCET), the Science \& Technology Research Key Project of
Educational Ministry of China (Grant |
Cite this article:
Chen Peng-Fei(陈鹏飞), Chen Zeng-Qiang(陈增强), and Wu Wen-Juan(吴文娟) A novel chaotic system with one source and two saddle-foci in Hopfield neural networks 2010 Chin. Phys. B 19 040509
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