The magnetic inverse problem for two stacked layers of sources

Michael T. M. Woodley, Thomas Coussens, William Evans, Matthew Withers, Leigh Page, Daniel Nightingale, Denilson Nicolau, Gary Kendall, Fedja Orucevic, Peter Kruger

Research output: Working paper / PreprintPreprint

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Abstract

We present calculations that reconstruct electronic current densities in two stacked layers at known depths, using magnetic field data. Solving this inverse problem requires knowledge of the magnetic field in two planes -- one above both current layers, one below -- corresponding to non-invasive measurements of the field. We corroborate the accuracy of current density reconstruction from the resulting system of equations using a numerical simulation. This method is anticipated to be applicable to non-destructive current imaging for quality assurance in a range of applications featuring two-layer geometries, including printed circuit boards, capacitors, fuel cells, and battery cells; we focus particularly here on battery cells, due to their rapidly increasing relevance for automotive applications. This method also offers a framework for generalising the model to more than two layers in future work.
Original languageEnglish
PublisherarXiv
Publication statusPublished - 3 Dec 2025

Keywords

  • math-ph

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