Strain rate self-sensing for a cantilevered piezoelectric beam

  • Nam, Yoonsu
  • Sasaki, Minoru
Citations

SCOPUS

8

초록

This paper deals with the analytical modeling, and the experimental verification of the strain rate self-sensing method using a hybrid adaptive filter for a cantilevered piezoelectric beam. The piezoelectric beam consists of two laminated lead zirconium titanates (PZT) on a metal shim. A mathematical model of the beam dynamics is derived by Hamilton's principle and the accuracy of the modeling is verified through the comparison with experimental results. For the strain rate estimation of the cantilevered piezoelectric beam, a self-sensing mechanism using a hybrid adaptive filter is considered. The discrete parts of this mechanism are realized by the DS1103 DSP board manufactured by dSPACE™. The efficacy of this method is investigated through the comparison of experimental results with the predictions from the derived analytical model.

키워드

Adaptive FilterHamilton's PrinciplePiezoelectric MaterialStrain Rate Self-Sensing
제목
Strain rate self-sensing for a cantilevered piezoelectric beam
저자
Nam, YoonsuSasaki, Minoru
DOI
10.1007/BF03185228
발행일
2002
유형
Article
저널명
KSME International Journal
16
3
페이지
310 ~ 319