DocumentCode :
1138024
Title :
Estimation of subsample time delay differences in narrowband ultrasonic echoes using the Hilbert transform correlation
Author :
Grennberg, Anders ; Sandell, Magnus
Author_Institution :
Dept. of Signal Process., Lulea Univ. of Technol., Sweden
Volume :
41
Issue :
5
fYear :
1994
Firstpage :
588
Lastpage :
595
Abstract :
In many areas the time delay of arrival (TDOA) is desired. In the case of narrowband signals we propose a fast and simple method to estimate small time delays. This method is shown to have the same or better accuracy as the cross correlation methods for small delays in the order of fractions of the sample interval. It is based on using the Hilbert transform in correlation between two signals and consists of only one scalar product, which makes it fast. It may also be used in applications with narrowband signals where the measurements are repeatable, such as ultrasonic imaging and nondestructive testing. In ultrasonic applications, due to fluctuations in the insonified media, a small random time shift may be present causing the signals to be misaligned in time. Averaging signals under these conditions will result in a distortion of the signal shape. We propose an averaging method to avoid this and to accomplish a higher SNR without the distortion. Simulations and experiments from ultrasonic applications are presented.<>
Keywords :
acoustic imaging; correlation methods; delays; echo; transforms; ultrasonic applications; ultrasonic materials testing; Hilbert transform correlation; averaging signals; cross correlation methods; fluctuations; higher SNR; insonified media; narrowband signals; narrowband ultrasonic echoes; nondestructive testing; sample interval; scalar product; small random time shift; small time delays; subsample time delay differences; time delay of arrival; ultrasonic applications; ultrasonic imaging; Acoustic applications; Correlation; Delay effects; Delay estimation; Distortion measurement; Fluctuations; Narrowband; Nondestructive testing; Ultrasonic imaging; Ultrasonic variables measurement;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/58.308493
Filename :
308493
Link To Document :
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