A model-based approach for inspection of aeronautical multi-layered structures by eddy currents
ISSN: 0332-1649
Article publication date: 30 October 2018
Issue publication date: 24 January 2019
Abstract
Purpose
The purpose of this paper is to propose an approach, which is easy to implement, for estimating the thickness of the air layer that may separate metallic parts in some aeronautical assemblies, by using the eddy current method.
Design/methodology/approach
Based on an experimental study of the coupling of a magnetic cup core coil sensor with a metallic layered structure (consisting of first metal layer/air layer/second metal layer), which is confirmed by finite element modelling simulations, an inversion technique relying on a polynomial forward model of the coupling is proposed to estimate the air layer thickness. The least squares and the nonnegative least squares algorithms are applied and analysed to obtain the estimation results.
Findings
The choice of an appropriate inversion technique to optimize the estimation results is dependent on the signal-to-noise ratio of measured data. The obtained estimation error is smaller than a few percent, for both simulated and experimental data. The proposed approach can be used to estimate both the air layer thickness and the second metal layer thickness simultaneously/separately.
Originality/value
This model-based approach is easy to implement and available to all types of eddy current sensors.
Keywords
Acknowledgements
This research is funded by the Vietnam National Foundation for Science and Technology Development (NAFOSTED) under grant number 103.99-2014.31.
Citation
Cung, L.T., Nguyen, N.H., Joubert, P.Y., Vourch, E. and Larzabal, P. (2019), "A model-based approach for inspection of aeronautical multi-layered structures by eddy currents", COMPEL - The international journal for computation and mathematics in electrical and electronic engineering, Vol. 38 No. 1, pp. 382-394. https://doi.org/10.1108/COMPEL-02-2018-0102
Publisher
:Emerald Publishing Limited
Copyright © 2018, Emerald Publishing Limited