Active vibration control of an inertial actuator subject to broadband excitation

Active vibration control has been widely used in many engineering applications in order to minimise vibrations in structures, when subjected to broadband random disturbances. Feedback control in the form of velocity feedback is considered in this paper, which generates a damping force proportional t...

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Published inJournal of physics. Conference series Vol. 744; no. 1; pp. 12028 - 12037
Main Authors Camperi, S, Ghanchi-Tehrani, M, Zilletti, M, Elliott, S J
Format Journal Article
LanguageEnglish
Published Bristol IOP Publishing 01.09.2016
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ISSN1742-6588
1742-6596
DOI10.1088/1742-6596/744/1/012028

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Abstract Active vibration control has been widely used in many engineering applications in order to minimise vibrations in structures, when subjected to broadband random disturbances. Feedback control in the form of velocity feedback is considered in this paper, which generates a damping force proportional to the velocity. The control gain is tuned in such a way to minimise the kinetic energy of the system. In this paper, an inertial actuator excited by a random voltage is considered and an active control is implemented. The dynamic equations of the system are derived and the response is obtained with and without control. The stability of the system is analysed using the Nyquist plot. The response of the actuator is obtained from time domain simulations using Matlab. The effect of the control gains are also investigated on the responses. Energy analysis shows how the energy in the system decreases by increasing the feedback gain up to a stability limit.
AbstractList Active vibration control has been widely used in many engineering applications in order to minimise vibrations in structures, when subjected to broadband random disturbances. Feedback control in the form of velocity feedback is considered in this paper, which generates a damping force proportional to the velocity. The control gain is tuned in such a way to minimise the kinetic energy of the system. In this paper, an inertial actuator excited by a random voltage is considered and an active control is implemented. The dynamic equations of the system are derived and the response is obtained with and without control. The stability of the system is analysed using the Nyquist plot. The response of the actuator is obtained from time domain simulations using Matlab. The effect of the control gains are also investigated on the responses. Energy analysis shows how the energy in the system decreases by increasing the feedback gain up to a stability limit.
Author Zilletti, M
Elliott, S J
Camperi, S
Ghanchi-Tehrani, M
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10.1016/j.jsv.2013.11.036
10.1016/j.jsv.2011.04.028
10.1016/j.jsv.2010.01.024
10.1016/j.jsv.2014.04.036
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StartPage 12028
SubjectTerms Active control
Actuators
Broadband
Control stability
Damping
Feedback control
Kinetic energy
Nyquist plots
Physics
Stability analysis
Vibration control
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