DocumentCode
45155
Title
Frequency-sweep examination for wave mode identification in multimodal ultrasonic guided wave signal
Author
Fateri, Sina ; Boulgouris, Nikolaos V. ; Wilkinson, Adam ; Balachandran, Wamadeva ; Tat-Hean Gan
Author_Institution
Center for Electron. Syst. Res. (CESR), Brunel Univ., Uxbridge, UK
Volume
61
Issue
9
fYear
2014
fDate
Sept. 2014
Firstpage
1515
Lastpage
1524
Abstract
Ultrasonic guided waves can be used to assess and monitor long elements of a structure from a single position. The greatest challenges for any guided wave system are the plethora of wave modes arising from the geometry of the structural element which propagate with a range of frequency-dependent velocities and the interpretation of these combined signals reflected by discontinuities in the structural element. In this paper, a novel signal processing technique is presented using a combination of frequency-sweep measurement, sampling rate conversion, and Fourier transform. The technique is applied to synthesized and experimental data to identify different modes in complex ultrasonic guided wave signals. It is demonstrated throughout the paper that the technique also has the capability to derive the time of flight and group velocity dispersion curve of different wave modes in field inspections.
Keywords
Fourier transforms; biomedical ultrasonics; diseases; medical signal processing; ultrasonic waves; Fourier transform; complex ultrasonic guided wave signal system; frequency-dependent velocity; frequency-sweep examination; frequency-sweep measurement; geometry; group velocity dispersion curve; multimodal ultrasonic guided wave signal system; plethora; sampling rate conversion; signal processing technique; signal reflection; structural element; wave mode identification; Acoustics; Dispersion; Fourier transforms; Frequency control; Frequency conversion; Inspection; Time-frequency analysis;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/TUFFC.2014.3065
Filename
6882949
Link To Document