This work presents the study of the dynamics and active control of a cantilever sigmoid FGM beam with porosities in a thermal environment. During this study, we considered the Timoshenko beam’s theory combined with the finite element method (FEM). This work also presents a comparative study with an experimental study for the vibration of a functionally graded piezoelectric beam (FGPM) to validate the numerical model. Linear quadratic Gaussian (LQG) optimal control with a Kalman filter was used for the vibration control using piezoelectric sensors and actuators as symmetrical layers to eliminate membrane effects. The controlled and uncontrolled responses are presented, considering the influence of thermal effect, the porosity of the FGM mate...
The present methodology of active vibration control has been developed for an optimum placement of a...
This paper investigates the static bending, free vibration, and dynamic response of monomorph, bimor...
This paper presents an efficient finite element (FE) model for the active vibration control response...
An analytical method on the active vibration control of a functionally graded beam equipped with lay...
This paper presents a dynamic study of sandwich functionally graded beam with piezoelectric layers t...
Due to their impressive capacity of sensing and actuating, piezoelectric materials have been widely ...
Improved active control of a functionally graded material beam with piezoelectric patches I Bruant a...
This paper deals with the active vibration control of beam like structures with distributed piezoele...
Due to their impressive capacity of sensing and actuating, piezoelectric materials have been widely ...
The advent of high strength and light weight composite materials and newly developed smart materials...
In the present paper, thermomechanical vibration characteristics of functionally graded (FG) Reddy b...
An efficient finite element model is presented for the static and dynamic piezothermoelastic analysi...
This paper deals with the design of a periodic output feedback controller for a flexible beam struct...
AbstractThis work is devoted to examine the performance of the constraining layer of the active cons...
A generalized piezothermoelastic finite element formulation of a laminated beam with embedded piezoe...
The present methodology of active vibration control has been developed for an optimum placement of a...
This paper investigates the static bending, free vibration, and dynamic response of monomorph, bimor...
This paper presents an efficient finite element (FE) model for the active vibration control response...
An analytical method on the active vibration control of a functionally graded beam equipped with lay...
This paper presents a dynamic study of sandwich functionally graded beam with piezoelectric layers t...
Due to their impressive capacity of sensing and actuating, piezoelectric materials have been widely ...
Improved active control of a functionally graded material beam with piezoelectric patches I Bruant a...
This paper deals with the active vibration control of beam like structures with distributed piezoele...
Due to their impressive capacity of sensing and actuating, piezoelectric materials have been widely ...
The advent of high strength and light weight composite materials and newly developed smart materials...
In the present paper, thermomechanical vibration characteristics of functionally graded (FG) Reddy b...
An efficient finite element model is presented for the static and dynamic piezothermoelastic analysi...
This paper deals with the design of a periodic output feedback controller for a flexible beam struct...
AbstractThis work is devoted to examine the performance of the constraining layer of the active cons...
A generalized piezothermoelastic finite element formulation of a laminated beam with embedded piezoe...
The present methodology of active vibration control has been developed for an optimum placement of a...
This paper investigates the static bending, free vibration, and dynamic response of monomorph, bimor...
This paper presents an efficient finite element (FE) model for the active vibration control response...