Experimental chaos detection in the Duffing oscillator
Experimental chaos detection in the Duffing oscillator
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Date
2016-04-01
Authors
Eyebe Fouda, J. S.Armand
Bodo, Bertrand
Djeufa, Guy M.D.
Sabat, Samrat L.
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Abstract
This paper presents a comparative study of four algorithms namely the maximal Lyapunov exponent (MLE), 0-1 test, conditional entropy of ordinal patterns (CPE) and recently developed permutation largest slope entropy (PLSE) algorithm for experimental chaos detection in the Duffing oscillator. We consider an electrical model of the Duffing oscillator and its equivalent electronic circuit for generating the data to validate the effectiveness of the algorithms. The performance of the PLSE is compared with the 0-1 test and the CPE algorithms on the data set obtained from the simulated circuit; and with the MLE for the data collected from the experimental circuit. The experimental data are acquired using a digital oscilloscope with 1 MHz sampling frequency. From the comparison of the experimental spectra of the four methods with the analog phase portraits of the real system, it appears that the PLSE is the more reliable algorithm for chaos detection from experimental data.
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Keywords
Experimental data,
Nonlinear system,
Time series analysis
Citation
Communications in Nonlinear Science and Numerical Simulation. v.33