Resonance control for a forced single-degree-of-freedom nonlinear system

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Show simple item record Leung, A Y T en_US Chen, Guanrong en_US Ji, Jc en_US
dc.contributor.editor en_US 2012-02-02T04:24:39Z 2012-02-02T04:24:39Z 2004 en_US
dc.identifier 2010001864 en_US
dc.identifier.citation Leung A Y T, Ji Jin, and Chen Guanrong 2004, 'Resonance control for a forced single-degree-of-freedom nonlinear system', World Scientific, vol. 14, no. 4, pp. 1423-1429. en_US
dc.identifier.issn 0218-1274 en_US
dc.identifier.other C1UNSUBMIT en_US
dc.description.abstract The main characteristic of a forced single-degree-of-freedom weakly nonlinear system is determined by its primary, super- and sub-harmonic resonances. A nonlinear parametric feedback control is proposed to modify the steady-state resonance responses, thus to reduce the amplitude of the response and to eliminate the saddle-node bifurcations that take place in the resonance responses. The nonlinear gain of the feedback control is determined by analyzing the bifurcation digrams associated with the corresponding frequency-response equation, from the singularity theory approach. It is shown by illustrative examples that the proposed nonlinear feedback is effective for controlling three kinds of resonance responses. en_US
dc.language en_US
dc.publisher World Scientific en_US
dc.relation.isbasedon en_US
dc.title Resonance control for a forced single-degree-of-freedom nonlinear system en_US
dc.parent International Journal of Bifurcation and Chaos en_US
dc.journal.volume 14 en_US
dc.journal.number 4 en_US
dc.publocation Singapore en_US
dc.identifier.startpage 1423 en_US
dc.identifier.endpage 1429 en_US FEIT.School of Elec, Mech and Mechatronic Systems en_US
dc.conference Verified OK en_US
dc.for 010300 en_US
dc.personcode 0000063227 en_US
dc.personcode 997749 en_US
dc.personcode 0000069134 en_US
dc.percentage 100 en_US Numerical and Computational Mathematics en_US
dc.classification.type FOR-08 en_US
dc.edition en_US
dc.custom en_US en_US
dc.location.activity en_US
dc.description.keywords resonance control; nonautonomous nonlinear system; nonlinear parametric feedback; bifurcation control; saddle-node bifurcation; singularity theory en_US

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