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      Dynamics of the Nearly Parametric Pendulum

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          Abstract

          Dynamically stable periodic rotations of a driven pendulum provide a unique mechanism for generating a uniform rotation from bounded excitations. This paper studies the effects of a small ellipticity of the driving, perturbing the classical parametric pendulum. The first finding is that the region in the parameter plane of amplitude and frequency of excitation where rotations are possible increases with the ellipticity. Second, the resonance tongues, which are the most characteristic feature of the classical bifurcation scenario of a parametrically driven pendulum, merge into a single region of instability.

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          Continuous control of chaos by self-controlling feedback

          K Pyragas (1992)
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            CURRENT‐VOLTAGE CHARACTERISTICS OF JOSEPHSON JUNCTIONS

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              Chaotic behaviour of a parametrically excited damped pendulum

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                Author and article information

                Journal
                11 March 2008
                2010-11-26
                Article
                10.1016/j.ijnonlinmec.2010.11.003
                0803.1662
                ebd489c4-f119-4aa2-8471-c1a9022607e2

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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                Custom metadata
                37G15
                7 pages, 5 figures
                math.DS

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