DocumentCode :
1362501
Title :
Impedance and attenuation profile estimation of multilayered material from reflected ultrasound
Author :
Chen, Tainsong ; Ho, Bong ; Zapp, H. Roland
Author_Institution :
Dept. of Electr. Eng., Michigan State Univ., East Lansing, MI, USA
Volume :
40
Issue :
4
fYear :
1991
fDate :
8/1/1991 12:00:00 AM
Firstpage :
787
Lastpage :
791
Abstract :
Time-domain and spectral shift methods for determining the attenuation and impedance profiles of multilayered structures are presented. The time-domain technique utilizes two-sided interrogation to measure attenuation and acoustic impedance for individual layers separately under the assumption of a narrowband incident wave. This method is based solely on peak amplitude ratios of successive time-domain echo returns from both sides of the target. The spectral shift technique requires that the propagating pulse have a Gaussian-shaped spectrum, and the transfer function of each layer be characterized by either linear or quadratic frequency dependent attenuation. This method derives the attenuation coefficients and acoustic impedances for individual layers from the information of spectral shift and spectral amplitude peak ratios of the successive gated pulses from single sided interrogation. Experimental results are compared with published data to confirm the validity of these approaches
Keywords :
acoustic impedance; attenuation measurement; time-domain reflectometry; ultrasonic materials testing; ultrasonic measurement; ultrasonic reflection; Gaussian-shaped spectrum; acoustic impedance; attenuation profile estimation; impedance measurement; impedance profiles; multilayered material; multilayered structures; narrowband incident wave; peak amplitude ratios; plexiglass; quadratic frequency dependent attenuation; reflected ultrasound; single sided interrogation; spectral amplitude peak ratios; spectral shift; time-domain; time-domain echo returns; tissue; transfer function; two-sided interrogation; Acoustic measurements; Acoustic propagation; Acoustic pulses; Acoustic waves; Attenuation measurement; Gaussian processes; Impedance measurement; Narrowband; Time domain analysis; Transfer functions;
fLanguage :
English
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9456
Type :
jour
DOI :
10.1109/19.85357
Filename :
85357
Link To Document :
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