Circuit Design as Implementation of Four Dimensional Hyper-chaos and Its Projective Synchronization
Received date: 2010-05-22
Revised date: 2010-07-09
Online published: 2010-07-23
We obtain a four-dimensional system by adding a nonlinear state feedback controller to a threedimensional chaotic system. The dynamical behaviors of this 4D system are investigated, including the Lyapunov exponent spectrum and bifurcation diagram. The results show that it is a 4D hyperchaotic system with two positive Lyapunov exponents. Projective synchronization for the 4D hyperchaotic system is realized based
on the stability criterion of linear systems. An electronic circuit is designed and implemented with projective synchronization of the 4D hyperchaotic system. The circuit consists of four parts: anti-adders, integrators, inverters and multipliers. Experimental observations are in agreement with numerical simulations.
LIU Ming-hua1;2, FENG Jiu-chao1;3 . Circuit Design as Implementation of Four Dimensional Hyper-chaos and Its Projective Synchronization[J]. Journal of Applied Sciences, 2010 , 28(4) : 406 -413 . DOI: 10.3969/j.issn.0255-8297.2010.04.013
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