Title :
Sparse signal model for ultrasonic nondestructive evaluation of CFRP composite plates
Author :
Bochud, Nicolas ; Gomez, Angel M. ; Rus, Guillermo ; Peinado, Antonio M.
Author_Institution :
Dept. of Struct. Mech., Univ. de Granada, Granada, Spain
Abstract :
Signal processing has been proven to be an useful tool to characterize damaged materials under ultrasonic nondestructive evaluation. In this work, we hypothesize that the transfer function of multilayered materials for a through-transmission configuration can be represented as a classical all-pole model with sparse coefficients. To test this hypothesis, we propose an analysis-by-synthesis scheme which, by assuming an underlying sparse digital signal model of the specimen, infers the order and extent of the model parameters corresponding to a certain impact damage level. Then, we exploit the sparse structure of the obtained digital filter for practical NDE applications, with emphasis on impact damage identification of carbon-fiber reinforced polymer plates.
Keywords :
carbon fibre reinforced composites; digital filters; impact (mechanical); multilayers; plates (structures); polymer fibres; signal processing; structural engineering computing; transfer functions; ultrasonic materials testing; CFRP composite plates; NDE applications; all-pole model; analysis-by-synthesis scheme; carbon-fiber reinforced polymer plates; damaged material characterization; digital filter; hypothesis testing; impact damage identification; impact damage level; model parameters; multilayered materials; signal processing; sparse coefficients; sparse digital signal model; through-transmission configuration; transfer function; ultrasonic nondestructive evaluation; Analytical models; Cepstrum; Materials; Proposals; Signal processing; Transfer functions; Signal processing; all-pole filter; non-destructive evaluation; sparse signal modeling; ultrasonics;
Conference_Titel :
Acoustics, Speech and Signal Processing (ICASSP), 2013 IEEE International Conference on
Conference_Location :
Vancouver, BC
DOI :
10.1109/ICASSP.2013.6638176