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Erschienen in: Optimization and Engineering 1/2018

09.10.2017

Active thermography setup updating for NDE: a comparative study of regression techniques and optimisation routines with high contrast parameter influences for thermal problems

verfasst von: J. Peeters, E. Louarroudi, B. Bogaerts, S. Sels, J. J. J. Dirckx, G. Steenackers

Erschienen in: Optimization and Engineering | Ausgabe 1/2018

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Abstract

An implementation of updating techniques similar to finite element updating in structural dynamics is developed for thermal material inspection using adaptive response surfaces to approximate experimental parameters. In general, thermal models contain high nonlinearities in their parameters, which influences updating accuracies. This is further investigated in this work. Several adaptive response surface regression methods are compared: interpolation, piecewise spline and polynomial regression functions. Next, the influence of the choice of optimisation parameters is discussed and compared with several global and local optimisation routines. Finally, a well-suited regression technique is investigated which transforms the dataset to a smaller, focused response model in each optimisation loop and delivers a proper regression accuracy. This results in data-reduction for the model to be optimised.

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Metadaten
Titel
Active thermography setup updating for NDE: a comparative study of regression techniques and optimisation routines with high contrast parameter influences for thermal problems
verfasst von
J. Peeters
E. Louarroudi
B. Bogaerts
S. Sels
J. J. J. Dirckx
G. Steenackers
Publikationsdatum
09.10.2017
Verlag
Springer US
Erschienen in
Optimization and Engineering / Ausgabe 1/2018
Print ISSN: 1389-4420
Elektronische ISSN: 1573-2924
DOI
https://doi.org/10.1007/s11081-017-9368-z

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