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2019 | OriginalPaper | Buchkapitel

Metrological Approach for Testing Performance of Optical 3D Measurements Systems

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Abstract

For quality control purposes, many manufacturing industries perform dimensional metrology checking processes that often necessitate the use of precision optical 3D measurement instruments, such as fringe projection systems, laser scanners and other similar non–contact systems. The typical measurement accuracies of commercially available instruments are down to few micrometers. In order to assure traceability of measurements to the SI, the meter, these instruments are normally calibrated by using different precision measurement standards, such ball bars and special 3D set-ups. With these optical standards, a range of different kinds of optical measurement instruments, together with their associated internal reference scales and image processing algorithms can be evaluated and then verified.
Recent research work in the field 3D optical artefact calibration is presented in this book. In addition, a tetrahedron ball standard and a method for calibrating 3D optical measurement systems are presented. The outcome of the presented research is a calibration procedure with approved measurement uncertainty that has already been accredited by the national accreditation body.

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Metadaten
Titel
Metrological Approach for Testing Performance of Optical 3D Measurements Systems
verfasst von
Bojan Acko
Rok Klobucar
Copyright-Jahr
2019
DOI
https://doi.org/10.1007/978-3-030-18177-2_5

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