The study of algorithms for active vibrations control in flexible structures became an area of enormous interest, mainly due to the countless demands of an optimal performance of mechanical systems as aircraft, aerospace and automotive structures. Smart structures, formed by a structure base, coupled with piezoelectric actuators and sensor are capable to guarantee the conditions demanded through the application of several types of controllers. The actuator/sensor materials are composed by piezoelectric ceramic (PZT - Lead Zirconate Titanate), commonly used as distributed actuators, and piezoelectric plastic films (PVDF-PolyVinyliDeno Floride), highly indicated for distributed sensors. The design process of such system encompasses three main...
AbstractThis work presents a new methodology for the parametric optimization of piezoelectric actuat...
Controlled flextensional actuators essentially involve a compliant mechanism assembled in associati...
The work has been supported by the Czech Science Foundation project 16-21961S Mechatronic structures...
The study of algorithms for active vibration control in smart structures is an area of interest, mai...
The study of algorithms for active vibrations control in flexible structures became an area of enorm...
ABSTRACT: The study of algorithms for active vibration control in smart structures is an area of int...
Abstract. Light structures are, also, usually lightly damped, which can cause large amplitude vibrat...
In this paper, a digital regulator is designed and experimentally implemented for a flexible beam ty...
Flexible space structures have serious problems with vibration, position and shape control. Long dec...
The purpose of present investigations is development of optimisation methodology for an active vibra...
Structural analysis and control system design are combined in a unique multiobjective optimization p...
This paper describes a computationally efficient method to determine optimal locations of sensor/act...
This work presents a new methodology for the parametric optimization of piezoelectric actuators inst...
The aim of this study is to design a Linear Quadratic Regulator (LQR) controller for the active vibr...
The development of lightweight, stronger, and more flexible structures has received the utmost inter...
AbstractThis work presents a new methodology for the parametric optimization of piezoelectric actuat...
Controlled flextensional actuators essentially involve a compliant mechanism assembled in associati...
The work has been supported by the Czech Science Foundation project 16-21961S Mechatronic structures...
The study of algorithms for active vibration control in smart structures is an area of interest, mai...
The study of algorithms for active vibrations control in flexible structures became an area of enorm...
ABSTRACT: The study of algorithms for active vibration control in smart structures is an area of int...
Abstract. Light structures are, also, usually lightly damped, which can cause large amplitude vibrat...
In this paper, a digital regulator is designed and experimentally implemented for a flexible beam ty...
Flexible space structures have serious problems with vibration, position and shape control. Long dec...
The purpose of present investigations is development of optimisation methodology for an active vibra...
Structural analysis and control system design are combined in a unique multiobjective optimization p...
This paper describes a computationally efficient method to determine optimal locations of sensor/act...
This work presents a new methodology for the parametric optimization of piezoelectric actuators inst...
The aim of this study is to design a Linear Quadratic Regulator (LQR) controller for the active vibr...
The development of lightweight, stronger, and more flexible structures has received the utmost inter...
AbstractThis work presents a new methodology for the parametric optimization of piezoelectric actuat...
Controlled flextensional actuators essentially involve a compliant mechanism assembled in associati...
The work has been supported by the Czech Science Foundation project 16-21961S Mechatronic structures...