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  • 1
    ISSN: 1573-269X
    Keywords: quasi-periodic excitation ; perturbation analysis ; generalized averaging ; multiple scales ; Melnikov technique ; suppression of chaos
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mathematics
    Notes: Abstract An analysis is given of the dynamic of a one-degree-of-freedom oscillator with quadratic and cubic nonlinearities subjected to parametric and external excitations having incommensurate frequencies. A new method is given for constructing an asymptotic expansion of the quasi-periodic solutions. The generalized averaging method is first applied to reduce the original quasi-periodically driven system to a periodically driven one. This method can be viewed as an adaptation to quasi-periodic systems of the technique developed by Bogolioubov and Mitropolsky for periodically driven ones. To approximate the periodic solutions of the reduced periodically driven system, corresponding to the quasi-periodic solution of the original one, multiple-scale perturbation is applied in a second step. These periodic solutions are obtained by determining the steady-state response of the resulting autonomous amplitude-phase differential system. To study the onset of the chaotic dynamic of the original system, the Melnikov method is applied to the reduced periodically driven one. We also investigate the possibility of achieving a suitable system for the control of chaos by introducing a third harmonic parametric component into the cubic term of the system.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Nonlinear dynamics 21 (2000), S. 135-155 
    ISSN: 1573-269X
    Keywords: three-dimensional systems ; periodic orbit ; multiple scales analysis ; homoclinic bifurcation
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mathematics
    Notes: Abstract An analytical approach to predicting a critical parameter valueof homoclinic bifurcation in a three-dimensional system is reported. Themultiple scales method is first performed to construct a higher-orderapproximation of the periodic solution. A criterion based on a collisionbetween the periodic orbit and the fixed point involved in thebifurcation is applied. This criterion developed initially to predicthomoclinic bifurcations in planar autonomous systems, is adapted here toderive a critical value of the homoclinic bifurcation in a specificthree-dimensional system. To support our analytical predictions and todescribe the dynamical behaviour of the system, a complete numericalstudy is provided.
    Type of Medium: Electronic Resource
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