The problem of the attenuation of the vibration effects in active cantilever beams has been approached by two strategies, position and velocity control, which have been simulated numerically and analyzed experimentally. The numerical simulation has been developed by means of a finite element approach based on an Euler-Bernoulli model and subsequent modal factorization. Each device as well as each electronic circuit, present in the single-input single-output control system has been modelled and the results of the numerical simulations have been compared with the ones obtained in the experimental tests. A good correspondence has been obtained in all the examined cases
The objective of this research project is to apply classical linear control system techniques to the...
The objective of this research project is to apply classical linear control system techniques to the...
This study presents an active vibration control technique applied to a smart beam. The smart beam co...
The present paper continues the author’s studies where the problem of the control of forced bending ...
Application of piezoelectric elements to active reduction of bending vibrations of the beams is know...
Application of piezoelectric elements to active reduction of bending vibrations of the beams is know...
Damping of vibrations is often required to improve both the performance and the integrity of enginee...
Vibration suppression of smart beams using the piezoelectric patch structure is presented in the pre...
Damping of vibrations is often required to improve both the performance and the integrity of enginee...
Following an efficient analytical method for vibration analysis of an Euler-Bernoulli developed earl...
Active vibration control of the first three modes of a vibrating cantilever beam using piezoelectric...
This paper deals with the active vibration control of beam like structures with distributed piezoel...
W pracy przedstawiono symulacje MES swobodnych i wymuszonych drgań belki, aktywnie tłumionych układe...
This paper deals with the active vibration control of beam like structures with distributed piezoele...
This study presents an active vibration control technique applied to a smart beam. The smart beam co...
The objective of this research project is to apply classical linear control system techniques to the...
The objective of this research project is to apply classical linear control system techniques to the...
This study presents an active vibration control technique applied to a smart beam. The smart beam co...
The present paper continues the author’s studies where the problem of the control of forced bending ...
Application of piezoelectric elements to active reduction of bending vibrations of the beams is know...
Application of piezoelectric elements to active reduction of bending vibrations of the beams is know...
Damping of vibrations is often required to improve both the performance and the integrity of enginee...
Vibration suppression of smart beams using the piezoelectric patch structure is presented in the pre...
Damping of vibrations is often required to improve both the performance and the integrity of enginee...
Following an efficient analytical method for vibration analysis of an Euler-Bernoulli developed earl...
Active vibration control of the first three modes of a vibrating cantilever beam using piezoelectric...
This paper deals with the active vibration control of beam like structures with distributed piezoel...
W pracy przedstawiono symulacje MES swobodnych i wymuszonych drgań belki, aktywnie tłumionych układe...
This paper deals with the active vibration control of beam like structures with distributed piezoele...
This study presents an active vibration control technique applied to a smart beam. The smart beam co...
The objective of this research project is to apply classical linear control system techniques to the...
The objective of this research project is to apply classical linear control system techniques to the...
This study presents an active vibration control technique applied to a smart beam. The smart beam co...