Lai et al., 1995 - Google Patents
Panel flutter limit-cycle suppression with piezoelectric actuationLai et al., 1995
- Document ID
- 17125056296907398829
- Author
- Lai Z
- Xue D
- Huang J
- Mei C
- Publication year
- Publication venue
- Journal of intelligent material systems and structures
External Links
Snippet
An optimal control design is presented to suppress panel flutter limit-cycle motions using piezoelectric actuators. First, the nonlinear dynamic equations of motion based on the classical continuum method are derived for a simply supported isotropic panel with a pair of …
- 230000001629 suppression 0 title abstract description 25
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Zhou et al. | Suppression of nonlinear panel flutter with piezoelectric actuators using finite element method | |
Heeg | An analytical and experimental investigation of flutter suppression via piezoelectric actuation | |
Song et al. | Active vibration damping of composite beam using smart sensors and actuators | |
McGowan et al. | Recent results from NASA's morphing project | |
Weisshaar | Static aeroelastic behavior of an adaptive laminated piezoelectric composite wing | |
Wang et al. | The static shape control for intelligent structures | |
Raja et al. | Flutter control of a composite plate with piezoelectric multilayered actuators | |
Zhou et al. | Suppression of nonlinear panel flutter at supersonic speeds and elevated temperatures | |
Abdel-Motagaly et al. | Active control of nonlinear panel flutter under yawed supersonic flow | |
CN111474852A (en) | Discrete sliding mode control method for piezoelectric drive deformable wing | |
Latalski et al. | Control of Bending-Bending Coupled Vibrations of a rRotating Thin-Walled Composite Beam | |
Lai et al. | Panel flutter limit-cycle suppression with piezoelectric actuation | |
Vos et al. | Post-buckled precompressed techniques in adaptive aerostructures: an overview | |
Versiani et al. | Aeroelastic behavior of a composite plate-like wing under piezoelectrically induced stresses | |
Scott et al. | Panel flutter suppression using adaptive material actuators | |
Li et al. | Suppression of thermal postbuckling and nonlinear panel flutter motions using piezoelectric actuators | |
Forster et al. | Flutter control of wing boxes using piezoelectric actuators | |
Kouritem et al. | Optimum location/area of PZT actuators for flutter damping using norm feedback control gain-based iterative method | |
Song et al. | Adaptive response control of cantilevered thin-walled beams carrying heavy concentrated masses | |
Kim et al. | Active control of nonlinear panel flutter using aeroelastic modes and piezoelectric actuators | |
Sebastijanovic et al. | Panel flutter detection and control using the eigenvector orientation method and piezoelectric layers | |
Lai et al. | Suppression of nonlinear panel flutter at elevated temperature with piezoelectric actuators | |
Jodin | Hybrid electroactive morphing at real scale-application to Airbus A320 wings | |
Suleman et al. | Flutter control of an adaptive composite panel | |
Becker et al. | Comparison of piezoelectric systems and aerodynamic systems for aircraft vibration alleviation |