DocumentCode :
768690
Title :
Time reversal of ultrasonic fields. I. Basic principles
Author :
Fink, Mathias
Author_Institution :
Lab. Ondes et Acoustique, Paris VIII Univ., France
Volume :
39
Issue :
5
fYear :
1992
Firstpage :
555
Lastpage :
566
Abstract :
Time reversal of ultrasonic fields represents a way to focus through an inhomogeneous medium. This may be accomplished by a time-reversal mirror (TRM) made from an array of transmit-receive transducers that respond linearly and allow the incident acoustic pressure to be sampled. The pressure field is then time-reversed and re-emitted. This process can be used to focus through inhomogeneous media on a reflective target that behaves as an acoustic source after being insonified. The time-reversal approach is introduced in a discussion of the classical techniques used for focusing pulsed waves through inhomogeneous media (adaptive time-delay techniques). Pulsed wave time-reversal focusing is shown using reciprocity valid in inhomogeneous medium to be optimal in the sense that it realizes the spatial-temporal matched filter to the inhomogeneous propagation transfer function between the array and the target. The research on time-reversed wave fields has also led to the development of new concepts that are described: time-reversal cavity that extends the concept of the TRM, and iterative time-reversal processing for automatic sorting of targets according to their reflectivity and resonating of extended targets.<>
Keywords :
acoustic arrays; acoustic field; focusing; iterative methods; mirrors; nonlinear acoustics; transfer functions; ultrasonic propagation; ultrasonic reflection; ultrasonic transducers; acoustic source; adaptive time-delay techniques; automatic sorting; classical techniques; inhomogeneous media; inhomogeneous propagation transfer function; iterative time-reversal processing; pulsed wave time reversal focusing; reflective target; reflectivity; spatial-temporal matched filter; time-reversal cavity; time-reversal mirror; time-reversed wave fields; transmit-receive transducers; ultrasonic fields; Acoustic arrays; Acoustic pulses; Acoustic transducers; Matched filters; Mirrors; Nonhomogeneous media; Sorting; Transfer functions; Transmission line measurements; Ultrasonic transducers;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/58.156174
Filename :
156174
Link To Document :
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