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Improved shunt damping with two negative capacitances: an efficient alternative to resonant shunt

Article dans une revue avec comité de lecture
Auteur
BERARDENGO, Marta
125443 Politecnico di Milano [Milan] [POLIMI]
ccTHOMAS, Olivier
MANZONI, Stefano
125443 Politecnico di Milano [Milan] [POLIMI]
ccGIRAUD-AUDINE, Christophe
13338 Laboratoire d’Électrotechnique et d’Électronique de Puissance - ULR 2697 [L2EP]
13338 Laboratoire d’Électrotechnique et d’Électronique de Puissance - ULR 2697 [L2EP]

URI
http://hdl.handle.net/10985/11321
DOI
10.1177/1045389X16667556
Date
2016
Journal
Journal of Intelligent Material Systems and Structures

Résumé

This paper deals with piezoelectric shunt damping enhanced with negative capacitances. A novel electrical circuit layout is addressed, based on the use of two negative capacitances. It is shown that the shunt performances, in terms of vibration reduction and stability margins, are increased as compared with the classical single negative capacitance layouts. Then, the article focuses on the comparison of a simple resistive shunt, enhanced by a pair of negative capacitances, with a classical resonant shunt. It is shown that the newly proposed enhanced resistive shunt can show equivalent performances in terms of vibration attenuation than the resonant shunt, with at the same time an increased robustness to frequency detuning, in the case of mono-modal damping. The broadband control capability of the resistive shunt coupled to the new negative capacitance layout is also evidenced. The main part of the work is analytical, and then the model is validated by an extensive experimental campaign at the end of the paper.

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  • Laboratoire d’Ingénierie des Systèmes Physiques Et Numériques (LISPEN)

Documents liés

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  • The reduction of operational amplifier electrical outputs to improve piezoelectric shunts with negative capacitance 
    Article dans une revue avec comité de lecture
    BERARDENGO, Marta; MANZONI, Stefano; ccTHOMAS, Olivier; DRAGO, L.; MARELLI, Stefano; VANALI, Marcello; ccGIRAUD-AUDINE, Christophe (Elsevier BV, 2021-08)
    One way to enhance the performance of vibration control with piezoelectric shunt is to use a negative capacitance in the shunt circuit. This component is very effective and pro- vides good results in terms of attenuation ...
  • Improved resistive shunt by means of negative capacitance: new circuit, performances and multi-mode control 
    Article dans une revue avec comité de lecture
    BERARDENGO, Marta; ccTHOMAS, Olivier; MANZONI, Stefano; ccGIRAUD-AUDINE, Christophe (IOP Publishing, 2016)
    This paper deals with vibration control by means of piezoelectric patches shunted with electrical impedances made up by a resistance and a negative capacitance. The paper analyses most of the possible layouts by which a ...
  • A new electrical circuit with negative capacitances to enhance resistive shunt damping 
    Communication avec acte
    BERARDENGO, Marta; MANZONI, Stefano; ccTHOMAS, Olivier; ccGIRAUD-AUDINE, Christophe (ASME, 2015)
    This article proposes a new layout of electrical network based on two negative capacitance circuits, aimed at increasing the performances of a traditional resistive piezoelectric shunt for structural vibration reduction. ...
  • Piezoelectric resonant shunt enhancement by negative capacitances: Optimisation, performance and resonance cancellation 
    Article dans une revue avec comité de lecture
    BERARDENGO, Marta; MANZONI, Stefano; ccTHOMAS, Olivier; VANALI, Marcello (SAGE Publications, 2018)
    This article addresses piezoelectric shunt damping through a resonant shunt associated with negative capacitances. The main objective of this article is to provide guidelines for choosing the best electrical circuit layout ...
  • Guidelines for the layout and tuning of piezoelectric resonant shunt with negative capacitances in terms of dynamic compliance, mobility and accelerance 
    Article dans une revue avec comité de lecture
    BERARDENGO, Marta; MANZONI, Stefano; ccTHOMAS, Olivier; VANALI, Marcello (SAGE Publications, 2021-01)
    This paper addresses the vibration attenuation provided by the resonant piezoelectric shunt enhanced by means of negative capacitances. The shunt impedance is composed by one or two negative capacitances, a resistance and ...

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