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Journal article

Spatial impulse response of a rectangular double curved transducer

From

Department of Electrical Engineering, Technical University of Denmark1

Biomedical Engineering, Department of Electrical Engineering, Technical University of Denmark2

Center for Fast Ultrasound Imaging, Centers, Technical University of Denmark3

Calculation of the pressure field from transducers having both a convex and a concave surface geometry is a complicated assignment that often is accomplished by subdividing the transducer surface into smaller flat elements of which the spatial impulse response is known. This method is often seen applied to curved transducers because an analytical solution is un-known.

In this work a semi-analytical algorithm for the exact solution to a first order in diffraction effect of the spatial impulse response of rectangular shaped double curved transducers is presented. The algorithm and an approximation of it are investigated. The approximation reformulates the algorithm to an analytically integrable expression which is computationally efficient to solve.

Simulation results are compared with the simulation software Field II. Calculating the response from 200 different points yields a mean error for the different approximations ranging from 0.03 % to 0.8 % relative to a numerical solution for the spatial impulse response. It is shown that the presented algorithm gives consistent results with Field II for a linear flat, a linear focused, and a convex non-focused element.

Best solution was found to be 0.01 % with a three-point Taylor expansion.

Language: English
Publisher: Acoustical Society of America
Year: 2012
Pages: 2730-2741
ISSN: 15208524 , 00014966 and 01630962
Types: Journal article
DOI: 10.1121/1.3693659
ORCIDs: Jensen, Jørgen Arendt

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