DocumentCode
624715
Title
Implementation of Rössler chaotic system through inherent exponential nonlinearity of a diode with two-channel chaotic synchronization applications
Author
Larptwee, S. ; San-Um, Wimol
Author_Institution
Basic Sci. Dept., Thai-Nichi Inst. of Technol., Bangkok, Thailand
fYear
2013
fDate
9-11 June 2013
Firstpage
787
Lastpage
791
Abstract
This paper presents a new Rössler chaotic system using exponential nonlinearity and its application to two-channel synchronization. The proposed chaotic system exhibits a chaotic attractor that resembles the original Rössler system with only six-term in three-dimensional ordinary equation systems using the exponential nonlinearity. Chaotic dynamics are described in terms of equilibria, Jacobian matrix, time domain waveforms, chaotic attractors, and bifurcation diagram. The circuit implementation is relatively compact and simple sine the exponential nonlinearity can be achieved by an inherent nonlinearity of single diode. An application to a two-channel secure communication are also demonstrated, showing a fast, low-error and robust synchronization processes.
Keywords
Jacobian matrices; bifurcation; chaotic communication; telecommunication security; time-domain analysis; Jacobian matrix; Rossler chaotic system; bifurcation diagram; chaotic attractor; chaotic dynamics; circuit implementation; diode; inherent exponential nonlinearity; low-error robust synchronization process; three-dimensional ordinary equation system; time domain waveform; two-channel chaotic synchronization application; two-channel secure communication; Chaotic communication; Equations; Mathematical model; Receivers; Synchronization; Transmitters;
fLanguage
English
Publisher
ieee
Conference_Titel
Intelligent Control and Information Processing (ICICIP), 2013 Fourth International Conference on
Conference_Location
Beijing
Print_ISBN
978-1-4673-6248-1
Type
conf
DOI
10.1109/ICICIP.2013.6568179
Filename
6568179
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