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2013 Determining the Lyapunov Spectrum of Continuous-Time 1D and 2D Multiscroll Chaotic Oscillators via the Solution of m -PWL Variational Equations
Jesus Manuel Munoz-Pacheco, Luz del Carmen Gómez-Pavón, Olga Guadalupe Félix-Beltrán, Arnulfo Luis-Ramos
Abstr. Appl. Anal. 2013: 1-11 (2013). DOI: 10.1155/2013/851970

Abstract

An algorithm to compute the Lyapunov exponents of piecewise linear function-based multidirectional multiscroll chaotic oscillators is reported. Based on the m regions in the piecewise linear functions, the suggested algorithm determines the individual expansion rate of Lyapunov exponents from m -piecewise linear variational equations and their associated m -Jacobian matrices whose entries remain constant during all computation cycles. Additionally, by considering OpAmp-based chaotic oscillators, we study the impact of two analog design procedures on the magnitude of Lyapunov exponents. We focus on analyzing variations of both frequency bandwidth and voltage/current dynamic range of the chaotic signals at electronic system level. As a function of the design parameters, a renormalization factor is proposed to estimate correctly the Lyapunov spectrum. Numerical simulation results in a double-scroll type chaotic oscillator and complex chaotic oscillators generating multidirectional multiscroll chaotic attractors on phase space confirm the usefulness of the reported algorithm.

Citation

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Jesus Manuel Munoz-Pacheco. Luz del Carmen Gómez-Pavón. Olga Guadalupe Félix-Beltrán. Arnulfo Luis-Ramos. "Determining the Lyapunov Spectrum of Continuous-Time 1D and 2D Multiscroll Chaotic Oscillators via the Solution of m -PWL Variational Equations." Abstr. Appl. Anal. 2013 1 - 11, 2013. https://doi.org/10.1155/2013/851970

Information

Published: 2013
First available in Project Euclid: 27 February 2014

zbMATH: 07095431
MathSciNet: MR3147817
Digital Object Identifier: 10.1155/2013/851970

Rights: Copyright © 2013 Hindawi

Vol.2013 • 2013
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