Parametrically Excited Oscillations of Second-Order Functional Differential Equations and Application to Duffing Equations with Time Delay Feedback

We study oscillatory behaviour of a large class of second-order functional differential equations with three freedom real nonnegative parameters. According to a new oscillation criterion, we show that if at least one of these three parameters is large enough, then the main equation must be oscillato...

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Veröffentlicht in:Discrete Dynamics in Nature and Society 2014-01, Vol.2014 (2014), p.485-501-244
1. Verfasser: Pasic, Mervan
Format: Artikel
Sprache:eng
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Zusammenfassung:We study oscillatory behaviour of a large class of second-order functional differential equations with three freedom real nonnegative parameters. According to a new oscillation criterion, we show that if at least one of these three parameters is large enough, then the main equation must be oscillatory. As an application, we study a class of Duffing type quasilinear equations with nonlinear time delayed feedback and their oscillations excited by the control gain parameter or amplitude of forcing term. Finally, some open questions and comments are given for the purpose of further study on this topic.
ISSN:1026-0226
1607-887X
DOI:10.1155/2014/875020