DocumentCode
1330103
Title
Analytical modeling of a sandwiched plate piezoelectric transformer-based acoustic-electric transmission channel
Author
Lawry, Tristan J. ; Wilt, Kyle R. ; Scarton, Henry A. ; Saulnier, Gary J.
Author_Institution
Appl. Phys. Sci. Corp., Groton, CT, USA
Volume
59
Issue
11
fYear
2012
fDate
11/1/2012 12:00:00 AM
Firstpage
2476
Lastpage
2486
Abstract
The linear propagation of electromagnetic and dilatational waves through a sandwiched plate piezoelectric transformer (SPPT)-based acoustic-electric transmission channel is modeled using the transfer matrix method with mixed domain two-port ABCD parameters. This SPPT structure is of great interest because it has been explored in recent years as a mechanism for wireless transmission of electrical signals through solid metallic barriers using ultrasound. The model we present is developed to allow for accurate channel performance prediction while greatly reducing the computational complexity associated with 2- and 3-dimensional finite element analysis. As a result, the model primarily considers 1-dimensional wave propagation; however, approximate solutions for higher-dimensional phenomena (e.g., diffraction in the SPPT´s metallic core layer) are also incorporated. The model is then assessed by comparing it to the measured wideband frequency response of a physical SPPT-based channel from our previous work. Very strong agreement between the modeled and measured data is observed, confirming the accuracy and utility of the presented model.
Keywords
acoustoelectric devices; computational complexity; electromagnetic wave propagation; finite element analysis; piezoelectric devices; transfer function matrices; transformers; wireless channels; SPPT structure; acoustic-electric transmission channel; analytical modeling; channel performance prediction; computational complexity; dilatational waves; electrical signals; electromagnetic linear propagation; higher-dimensional phenomena; measured wideband frequency response; mixed domain two-port ABCD parameters; one-dimensional wave propagation; physical SPPT-based channel; sandwiched plate piezoelectric transformer; solid metallic barriers; three-dimensional finite element analysis; transfer matrix method; two dimensional finite element analysis; ultrasound; wireless transmission; Acoustics; Analytical models; Computational modeling; Materials; Slabs; Transducers;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/TUFFC.2012.2480
Filename
6343274
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