Zugriffsnummer 47414
Dokumenttyp Zeitschriftenartikel Open Access Gold
Peer Review mit Peer Review
Sprache Englisch
Titel GUM-compliant uncertainty evaluation using virtual experiments
Autor(in); Institution
Wübbeler, Gerd; 8.4, Mathematische Modellierung und Datenanalyse, PTB-Berlin
Marschall, Manuel; 8.4, Mathematische Modellierung und Datenanalyse, PTB-Berlin
Kniel, Karin; 5.3, Koordinatenmesstechnik, PTB-Braunschweig
Heißelmann, Daniel; 5.3, Koordinatenmesstechnik, PTB-Braunschweig
Härtig, Frank; Präsidium, VP, PTB-Braunschweig
Elster, Clemens; 8.4, Mathematische Modellierung und Datenanalyse, PTB-Berlin
Quelle/Jahr Metrology: 2 (2022), 1, 114 - 127
Availability [online only]
ISSN 2673-8244 (ONLINE)
DOI
Verlag Basel: MDPI
Freie Schlagworte virtual experiment ; uncertainty evaluation ; GUM ; Monte Carlo
Zusammenfassung A virtual experiment simulates a real measurement process by means of a numerical model. The numerical model produces virtual data whose properties reflect those of the data observed in the real experiment. In this work, we explore how the results of a virtual experiment can be employed in the context of uncertainty evaluation for a corresponding real experiment. The uncertainty evaluation was based on the Guide to the Expression of Uncertainty in Measurement (GUM), which defines the de facto standard for uncertainty evaluation in metrology. We show that, under specific assumptions about model structure and variance of the data, virtual experiments in combination with a Monte Carlo method lead to an uncertainty evaluation for the real experiment that is in line with Supplement 1 to the GUM. In the general case, a GUM-compliant uncertainty evaluation in the context of a real experiment can no longer be based on a corresponding virtual experiment in a simple way. Nevertheless, virtual experiments are still useful in order to increase the reliability of an uncertainty analysis. Simple generic examples as well the case study of a virtual coordinate measuring machine are presented to illustrate the treatment.
Kostenfreier Zugang Open Access Gold
Rechteinformation CC BY 4.0 ; Creative Commons Attribution 4.0 License
Themenbereich der Metrologie Mathematik und metrologische Informationstechnik

Zitierung

Wübbeler, G., Marschall, M., Kniel, K., Heißelmann, D., Härtig, F., & Elster, C. (2022). GUM-compliant uncertainty evaluation using virtual experiments. Metrology, 2(1), 114–127. https://doi.org/10.3390/metrology2010008

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