Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/28765
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dc.contributor.authorLee, Y.-
dc.contributor.authorHalim, D.-
dc.contributor.authorChen, L.-
dc.contributor.authorCazzolato, B.-
dc.contributor.editorDMee,-
dc.contributor.editorHooker, R.-
dc.contributor.editorHillock, I.-
dc.date.issued2004-
dc.identifier.citationAcoustics 2004 : transportation noise and vibration - the new millennium : proceedings of the Annual Conference of the Australian Acoustical Society, 3-5 November, 2004, Gold Coast, Australia / David J. Mee, Robert J. Hooker, Ian D.M. Hillock (eds.): pp.375-380-
dc.identifier.isbn0909882223-
dc.identifier.urihttp://hdl.handle.net/2440/28765-
dc.description.abstractIn this paper, a control method that combines linear and nonlinear velocity feedback control is proposed to suppress the principal parametric resonance in a flexible cantilever beam structure. Linear-velocity feedback is employed for bifurcation control and cubic-velocity feedback is employed to suppress the high-amplitude vibration. Numerical simulation and experimental results show that combined bifurcation control and nonlinear feedback control can avoid actuator saturation and performs better than linear-velocity and cubic-velocity feedback control alone.-
dc.description.statementofresponsibilityLee, Y. K., Halim, D., Chen, L. and Cazzolato, B.-
dc.language.isoen-
dc.publisherAustralian Acoustical Society-
dc.source.urihttp://www.mecheng.adelaide.edu.au/avc/publications/abstract.php?abstract=191-
dc.titleDesign and implementation of spatial feedback control on a flexible plate-
dc.typeConference paper-
dc.contributor.conferenceAustralian Acoustical Society. Conference (2004 : Gold Coast, Qld.)-
dc.publisher.placeCD-ROM-
pubs.publication-statusPublished-
dc.identifier.orcidChen, L. [0000-0002-2269-2912]-
dc.identifier.orcidCazzolato, B. [0000-0003-2308-799X]-
Appears in Collections:Aurora harvest 6
Environment Institute publications
Mechanical Engineering conference papers

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