The wing is one of the most important parts of an airplane because it ensures stability, sustenance and maneuverability of the airplane. Because of its shape, the airplane wing can be simplified to a smart beam. Active vibration suppression is realized using piezoelectric actuators that are mounted on the surface of the beam. This work presents a tuning procedure of fractional order controllers based on a graphical approach of the frequency domain representation. The efficacy of the method is proven by practically testing the controller on a laboratory scale experimental stand
This paper focuses on designing and implementation of frac-tional order proportional integral (PIα) ...
Conformal airborne antennas have several advantages compared to externally mounted antennas, and the...
In times when aircraft are becoming lighter and faster, the problem areas of aeroelasticity are also...
Fractional order controllers are receiving an ever-increasing interest from the research community d...
Vibrations in airplane wings have a negative impact on the quality and safety of a flight. For this ...
One of the major problems encountered in the active vibration control of aircraft wings is the chang...
Smart structures are obtained by integration of actuators, sensors and controllers into conventional...
Smart beams are one of the most frequently used means of studying vibrations in airplane wings. Thei...
Purpose - The purpose of this paper is to detail the design of a fractional controller which was dev...
In this paper a novel Active Vibration Control (AVC) strategy based on fractional-order calculus is ...
In this paper, a fractional-order extension of a negative position feedback (NPF) controller for act...
In this study the fractional controllers, which were realized by the different degrees of the Contin...
This paper focuses on designing and implementation of fractional order proportional integral (PIα ) ...
The chapter focuses on the experimentation setup and implementation of the fractional controller on ...
Abstract: The article proposes a method to design a robust controller ensuring the damping ratio of ...
This paper focuses on designing and implementation of frac-tional order proportional integral (PIα) ...
Conformal airborne antennas have several advantages compared to externally mounted antennas, and the...
In times when aircraft are becoming lighter and faster, the problem areas of aeroelasticity are also...
Fractional order controllers are receiving an ever-increasing interest from the research community d...
Vibrations in airplane wings have a negative impact on the quality and safety of a flight. For this ...
One of the major problems encountered in the active vibration control of aircraft wings is the chang...
Smart structures are obtained by integration of actuators, sensors and controllers into conventional...
Smart beams are one of the most frequently used means of studying vibrations in airplane wings. Thei...
Purpose - The purpose of this paper is to detail the design of a fractional controller which was dev...
In this paper a novel Active Vibration Control (AVC) strategy based on fractional-order calculus is ...
In this paper, a fractional-order extension of a negative position feedback (NPF) controller for act...
In this study the fractional controllers, which were realized by the different degrees of the Contin...
This paper focuses on designing and implementation of fractional order proportional integral (PIα ) ...
The chapter focuses on the experimentation setup and implementation of the fractional controller on ...
Abstract: The article proposes a method to design a robust controller ensuring the damping ratio of ...
This paper focuses on designing and implementation of frac-tional order proportional integral (PIα) ...
Conformal airborne antennas have several advantages compared to externally mounted antennas, and the...
In times when aircraft are becoming lighter and faster, the problem areas of aeroelasticity are also...