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Erschienen in: Meccanica 4-5/2017

25.05.2016

Non-stationary response of a van der Pol-Duffing oscillator under Gaussian white noise

verfasst von: H. T. Zhu

Erschienen in: Meccanica | Ausgabe 4-5/2017

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Abstract

This paper investigates the probability density evolution process of a van der Pol-Duffing oscillator under Gaussian white noise. A path integration method is employed with the Gauss–Legendre integration scheme. In the path integration method, the short-time Gaussian approximation scheme is used for computing the one-step transition probability density. Two cases are considered with slight nonlinearity or strong nonlinearity in displacement. The stationary and non-stationary responses of the oscillator are studied. Compared with the simulation result, the path integration method can present a satisfactory probability density function (PDF) solution for each case. Different probability density evolution processes are observed correspondingly. In the case of slight nonlinearity, the PDF undergoes a clockwise motion around the origin. The peak region gradually expands and the PDF eventually forms a circle. By contrast, the strong nonlinearity drives the oscillator to oscillate around the limit cycle. In such a case, the PDF rapidly forms a circle. The circle keeps its shape and develops until the oscillator becomes stationary. More complicated phenomena can be studied by the adopted path integration method.

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Metadaten
Titel
Non-stationary response of a van der Pol-Duffing oscillator under Gaussian white noise
verfasst von
H. T. Zhu
Publikationsdatum
25.05.2016
Verlag
Springer Netherlands
Erschienen in
Meccanica / Ausgabe 4-5/2017
Print ISSN: 0025-6455
Elektronische ISSN: 1572-9648
DOI
https://doi.org/10.1007/s11012-016-0458-3

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