Publication | Closed Access
Active vibration control of composite plate with optimal placement of piezoelectric patches
86
Citations
24
References
2017
Year
Composite PlateEngineeringMechanical EngineeringMechatronicsMechanical SystemsStructural Health MonitoringPiezoelectric SensorActive Vibration ControlNonlinear Vibration ControlPiezoelectric PatchesOptimal PlacementPiezoelectricityVibration IsolationStructural MechanicsVibration ControlDiscrete Piezoelectric PatchesSmart StructureStructural Vibration
The active vibration control of a composite plate using discrete piezoelectric patches has been investigated. Based on first order shear deformation theory, a finite element model with the contributions of piezoelectric sensor and actuator patches to the mass and stiffness of the plate was used to derive the state space equation. A global optimization based on LQR performance is developed to find the optimal location of the piezoelectric patches. Genetic algorithm is adopted and implemented to evaluate the optimal configuration. The piezoelectric actuator provides a damping effect on the composite plate by means of LQR control algorithm. A correlation between the patches number and the closed loop damping coefficient is established.
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