journals.iop.org home page electronic journals * User guide   * Site map   | Quick Search:Help  
Smart Materials and Structures
Athens/Institutional login
IOP login: Password:   
Create account | Alerts | Contact us
Journals Home | Journals List | EJs Extra | This Journal | Search | Authors | Referees | Librarians | User Options | Help |

Reducing the inductance requirements of piezoelectric shunt damping systems

A J Fleming et al 2003 Smart Mater. Struct. 12 57-64   doi: 10.1088/0964-1726/12/1/307  Help

   PDF (281 KB) | Gzipped PS (328 KB) | References | Articles citing this article

A J Fleming1, S Behrens and S O R Moheimani
School of Electrical Engineering and Computer Science, University of Newcastle, Callaghan 2308, Australia
E-mail: andrew@ee.newcastle.edu.au
1 Author to whom any correspondence should be addressed.

Abstract. Structural vibration can be reduced by shunting an attached piezoelectric transducer (PZT) with an electrical impedance. Current shunt circuit designs, e.g. a single-mode inductor–resistor network, typically require large inductance values of up to thousands of henries. In practice, discrete inductors are limited in size to around 1 H. By placing an additional capacitance across the terminals of the PZT, shunt circuit inductances can be drastically reduced. To justify our claims, we present a theoretical analysis of the damped system and identify the influence of the additional capacitance. Two modes of a simply supported beam are successfully damped using a capacitance modified shunt circuit. A low inductance multi-mode circuit is also studied and experimentally verified.

Print publication: Issue 1 (February 2003)
Received 27 November 2001, in final form 16 August 2002
Published 10 January 2003

Bookmark and Share Post to CiteUlike | Post to Connotea | Post to Bibsonomy

 

Find related articles





Article options

Authors & Referees

IOP Journal Archiveeprintweb.org - Your address for E prints
 
Content finder
  Full Search
  Help


  
Setup information is available for Adobe Acrobat and Gzip compressed PostScript.
EndNote, ProCite ® and Reference Manager ® are registered trademarks of ISI Researchsoft.
Copyright © Institute of Physics and IOP Publishing Limited 2009.
Use of this service is subject to compliance with the terms and conditions of use. In particular, reselling and systematic downloading of files is prohibited.
Help: Cookies | Data Protection.