Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
4740403 | Journal of Applied Geophysics | 2013 | 7 Pages |
Abstract
Wideband electromagnetic induction systems have shown improved false alarm rates when compared with traditional metal detectors. Calibration of these sensors and the development of algorithms for target discrimination could be assisted by a set of models for common targets. In this paper, simple wideband models of the eddy current response for a wire and disk are provided. These are provided in the form of a singularity expansion of the polarizability dyadic. In an effort to make this form more concrete, a major focus of the paper is on relating the terms of the expansion to graphs of the currents present on the disk. The models provided in the paper are based on limiting forms of a cylinder as computed using the body-of-revolutions finite element method. Measured polarizability dyadics are also shown to fit the forms provided reasonably well.
Related Topics
Physical Sciences and Engineering
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Geophysics
Authors
Waymond R. Jr., Michael McFadden,