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A new method for aspherical surface fitting with large-volume datasets

Article dans une revue avec comité de lecture
Auteur
EL HAYEK, Nadim
NOUIRA, Hichem
ANWER, Nabil
6862 École normale supérieure - Cachan [ENS Cachan]
DAMAK, Mohamed
ccGIBARU, Olivier
178374 Laboratoire des Sciences de l'Information et des Systèmes : Ingénierie Numérique des Systèmes Mécaniques [LSIS- INSM]

URI
http://hdl.handle.net/10985/8647
DOI
10.1016/j.precisioneng.2014.06.004
Date
2014
Journal
Precision Engineering

Résumé

In the framework of form characterization of aspherical surfaces, European National Metrology Institutes (NMIs) have been developing ultra-high precision machines having the ability to measure aspherical lenses with an uncertainty of few tens of nanometers. The fitting of the acquired aspherical datasets onto their corresponding theoretical model should be achieved at the same level of precision. In this article, three fitting algorithms are investigated: the Limited memory-Broyden-Fletcher-Goldfarb-Shanno (L-BFGS), the Levenberg–Marquardt (LM) and one variant of the Iterative Closest Point (ICP). They are assessed based on their capacities to converge relatively fast to achieve a nanometric level of accuracy, to manage a large volume of data and to be robust to the position of the data with respect to the model. Nev-ertheless, the algorithms are first evaluated on simulated datasets and their performances are studied. The comparison of these algorithms is extended on measured datasets of an aspherical lens. The results validate the newly used method for the fitting of aspherical surfaces and reveal that it is well adapted, faster and less complex than the LM or ICP methods.

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  • Comparison of tactile and chromatic confocal measurements of aspherical lenses for form metrology 
    Article dans une revue avec comité de lecture
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    Both contact and non-contact probes are often used in dimensional metrology applications, especially for roughness, form and surface profile measurements. To perform such kind of measurements with a nanometer level of ...
  • 3D Measurement and Characterization of Ultra-precision Aspheric Surfaces 
    Article dans une revue avec comité de lecture
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    Aspheric surfaces have become widely used in various fields ranging from imaging systems to energy and biomedical applications. Although many researches have been conducted to address their manufacturing and measurement, ...
  • Fast B-Spline 2D Curve Fitting for unorganized Noisy Datasets 
    Communication sans acte
    EL HAYEK, Nadim; DAMAK, Mohamed; NOUIRA, Hichem; ANWER, Nabil; ccNYIRI, Eric; ccGIBARU, Olivier (2014)
    In the context of coordinate metrology and reverse engineering, freeform curve reconstruction from unorganized data points still offers ways for improvement. Geometric convection is the process of fitting a closed shape, ...
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    Article dans une revue sans comité de lecture
    EL HAYEK, Nadim; NOUIRA, Hichem; ANWER, Nabil; DAMAK, Mohamed; ccGIBARU, Olivier (IOP Publishing, 2014)
    The application of freeform surfaces has increased since their complex shapes closely express a product's functional specifications and their machining is obtained with higher accuracy. In particular, optical surfaces ...
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    Article dans une revue avec comité de lecture
    VISSIERE, Alain; NOUIRA, Hichem; DAMAK, Mohamed; ccGIBARU, Olivier; DAVID, Jean-Marie (IOP Publishing, 2012)
    Advanced manufacturing processes require improving dimensional metrology applications to reach a nanometric accuracy level. Such measurements may be carried out using conventional highly accurate roundness measuring machines. ...

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