DocumentCode
2730682
Title
Time-frequency based signal restoration for Laser-Ultrasound signals with applications in Nondestructive testing
Author
Qidwai, Uvais ; Maqbool, Maqbool ; Alam, Mahmoud ; Kserawi, Safwan
Author_Institution
Comp. Sc. & Eng., Qatar Univ., Doha, Qatar
fYear
2011
fDate
25-28 Sept. 2011
Firstpage
348
Lastpage
353
Abstract
In this paper, an inspection system has been presented that uses Laser-Ultrasound (LU) technique for Nondestructive testing (NDT) of metallic structures with specific interest in Oil & Gas sector. While the developed system is the first one of its kind in the Middle-Eastern region, the nature of signals are quite unique as well and traditional signal processing runs into a lot of algorithmic complications with them. A new approach has been developed for this setup in order to efficiently enhance signal to noise ratio for the underlying signals so that any subsequent classification/intelligent-detection system can be based on the outcomes of this algorithm. Multiform Tiltable Exponential Distribution (MTED) kernel, which is a generalization of 2nd order Cohen´s class functions in Time-Frequency Representation (TFR) space, has been used in this work to isolate the essential frequency components with temporal and frequency based masking filters. By using this technique, we were able to isolate many significant defects buried in heavy noise and correlating signals. This enables the identification of the defect wavelets as well as their locations can be identified from the ambiguous and contaminating signals that are inherently produced as a result of laser ultrasound inspection.
Keywords
acoustic filters; acoustic noise; acoustic signal processing; inspection; structural acoustics; ultrasonic materials testing; ultrasonics; Cohen class functions; laser ultrasound inspection; laser-ultrasound signals; masking filters; metallic structures; multiform tiltable exponential distribution kernel; nondestructive testing; signal processing; signal-to-noise ratio; time-frequency based signal restoration; time-frequency representation space; wavelets; Acoustics; Indexes; Kernel; Laser applications; Steel; Time frequency analysis; Laser-Ultrasound (LU) Signals; Metal-Loss characterization; Multiform Tiltable Exponential Distribution (MTED); Signal Enhancement; Time Frequency Representation (TFR);
fLanguage
English
Publisher
ieee
Conference_Titel
Industrial Electronics and Applications (ISIEA), 2011 IEEE Symposium on
Conference_Location
Langkawi
Print_ISBN
978-1-4577-1418-4
Type
conf
DOI
10.1109/ISIEA.2011.6108729
Filename
6108729
Link To Document