A new method for the real-time identification of mechanical system modal parameters is used in order to design different adaptive control logics aiming to reduce the vibrations in a carbon fiber plate smart structure. It is instrumented with three piezoelectric actuators, three accelerometers and three strain gauges. The real-time identification is based on a recursive subspace tracking algorithm whose outputs are elaborated by an ARMA model. A statistical approach is finally applied to choose the modal parameter correct values. These are given in input to model-based control logics such as a gain scheduling and an adaptive LQR control
Summarization: An efficient strategy for calculation of delaminations in composite beams and intelli...
Adaptive Active Control algorithms, such as the well known Filtered-X LMS and Filtered-U LMS algorit...
The integration of actuators and sensors using smart materials enabled various applications includin...
A new method for the real-time identification of mechanical system modal parameters is used in order...
During the last years, more and more mechanical applications saw the introduction of active control...
The vibration reduction in mechanical systems can be performed by means of active control strategies...
798-807This paper presents experimental adaptive identification and control of a smart structure fea...
This project involves the study of active vibration control of the Stewart Platform using robust con...
An overview of our latest research and development is presented on structural system identification ...
This paper describes advances in the identification and control of flexible structures by consequent...
A structural system can be described by its modal properties. Therefore, it seems promising if the c...
A smart structure plays a vital role in aerospace applications and robotics and other applications. ...
An overview of our latest research and development is presented on structural system identification ...
Smart structures consist of highly distributed sensors and actuators and controllers are used to coo...
Lightweight structures such as aircraft are prone to vibration. In changing flight conditions, the v...
Summarization: An efficient strategy for calculation of delaminations in composite beams and intelli...
Adaptive Active Control algorithms, such as the well known Filtered-X LMS and Filtered-U LMS algorit...
The integration of actuators and sensors using smart materials enabled various applications includin...
A new method for the real-time identification of mechanical system modal parameters is used in order...
During the last years, more and more mechanical applications saw the introduction of active control...
The vibration reduction in mechanical systems can be performed by means of active control strategies...
798-807This paper presents experimental adaptive identification and control of a smart structure fea...
This project involves the study of active vibration control of the Stewart Platform using robust con...
An overview of our latest research and development is presented on structural system identification ...
This paper describes advances in the identification and control of flexible structures by consequent...
A structural system can be described by its modal properties. Therefore, it seems promising if the c...
A smart structure plays a vital role in aerospace applications and robotics and other applications. ...
An overview of our latest research and development is presented on structural system identification ...
Smart structures consist of highly distributed sensors and actuators and controllers are used to coo...
Lightweight structures such as aircraft are prone to vibration. In changing flight conditions, the v...
Summarization: An efficient strategy for calculation of delaminations in composite beams and intelli...
Adaptive Active Control algorithms, such as the well known Filtered-X LMS and Filtered-U LMS algorit...
The integration of actuators and sensors using smart materials enabled various applications includin...