A model-based Linear Quadratic Regulator (LQR) method for controlling vibrations in cylindrical shells is presented. Surface-mounted piezo-ceramic patches are employed as actuators which leads to unbounded control input operators. Modified Donnell-Mushtari shell equations incorporating strong or Kelvin-Voigt damping are used to model the system. The model is then abstractly formulated in terms of sesquilinear forms. This provides a framework amenable for proving model well-posedness and convergence of LQR gains using analytic semigroup results combined with LQR theory for unbounded input operators. Finally, numerical examples demonstrating the effectiveness of the method are presented
The objective of this dissertation is the vibration and buckling control of piezo-laminated composit...
A fully coupled mathematical model describing the interactions between a vibrating thin cylindrical ...
A spline-based method for approximating thin shell dynamics is presented here. While the method is d...
A model-based LQR method for controlling vibrations in cylindrical shells is presented. Surface-moun...
Space structures with their low structural damping, large size and high flexibility, tend to suffer ...
The active control of acoustic pressure in a 2-D cavity with a flexible boundary (a beam) is conside...
Active vibration control of smart composite shallow shells with distributed piezoelectric sensors an...
A modal dynamic model is developed for the active vibration control of laminated doubly curved shell...
The concept of optimal vibration control using LQR (Linear Quadratic Regulator) is a new area of res...
General models describing the interactions between a pair of piezoceramic patches and elastic substr...
This thesis employs a coupled structural-electrical finite element modal formulation for the control...
Control and estimator gains are computed for linear-quadratic-Gaussian (LQG) optimal control of the ...
This paper focuses on the optimal vibration control of clamped-free conical shells using di-stribute...
This paper focuses on the optimal vibration control of clamped-free conical shells using distributed...
Optimum placement of multiple traditional piezoceramic actuators is determined for active structural...
The objective of this dissertation is the vibration and buckling control of piezo-laminated composit...
A fully coupled mathematical model describing the interactions between a vibrating thin cylindrical ...
A spline-based method for approximating thin shell dynamics is presented here. While the method is d...
A model-based LQR method for controlling vibrations in cylindrical shells is presented. Surface-moun...
Space structures with their low structural damping, large size and high flexibility, tend to suffer ...
The active control of acoustic pressure in a 2-D cavity with a flexible boundary (a beam) is conside...
Active vibration control of smart composite shallow shells with distributed piezoelectric sensors an...
A modal dynamic model is developed for the active vibration control of laminated doubly curved shell...
The concept of optimal vibration control using LQR (Linear Quadratic Regulator) is a new area of res...
General models describing the interactions between a pair of piezoceramic patches and elastic substr...
This thesis employs a coupled structural-electrical finite element modal formulation for the control...
Control and estimator gains are computed for linear-quadratic-Gaussian (LQG) optimal control of the ...
This paper focuses on the optimal vibration control of clamped-free conical shells using di-stribute...
This paper focuses on the optimal vibration control of clamped-free conical shells using distributed...
Optimum placement of multiple traditional piezoceramic actuators is determined for active structural...
The objective of this dissertation is the vibration and buckling control of piezo-laminated composit...
A fully coupled mathematical model describing the interactions between a vibrating thin cylindrical ...
A spline-based method for approximating thin shell dynamics is presented here. While the method is d...