Experimental Active Vibration Control in Truss Structures Considering Uncertainties in System Parameters
Contribuinte(s) |
Universidade Estadual Paulista (UNESP) |
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Data(s) |
20/05/2014
20/05/2014
01/01/2008
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Resumo |
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP) This paper deals with the study of algorithms for robust active vibration control in flexible structures considering uncertainties in system parameters. It became an area of enormous interest, mainly due to the countless demands of optimal performance in mechanical systems as aircraft, aerospace, and automotive structures. An important and difficult problem for designing active vibration control is to get a representative dynamic model. Generally, this model can be obtained using finite element method (FEM) or an identification method using experimental data. Actuators and sensors may affect the dynamics properties of the structure, for instance, electromechanical coupling of piezoelectric material must be considered in FEM formulation for flexible and lightly damping structure. The nonlinearities and uncertainties involved in these structures make it a difficult task, mainly for complex structures as spatial truss structures. on the other hand, by using an identification method, it is possible to obtain the dynamic model represented through a state space realization considering this coupling. This paper proposes an experimental methodology for vibration control in a 3D truss structure using PZT wafer stacks and a robust control algorithm solved by linear matrix inequalities. |
Formato |
14 |
Identificador |
http://dx.doi.org/10.1155/2008/754951 Mathematical Problems In Engineering. New York: Hindawi Publishing Corporation, p. 14, 2008. 1024-123X http://hdl.handle.net/11449/9949 10.1155/2008/754951 WOS:000261575600001 WOS000261575600001.pdf |
Idioma(s) |
eng |
Publicador |
Hindawi Publishing Corporation |
Relação |
Mathematical Problems in Engineering |
Direitos |
openAccess |
Tipo |
info:eu-repo/semantics/article |