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The measuring instrument accuracy class as a measure of the Type B uncertainty

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Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The evaluation of Type B uncertainty is done by means of scientific analysis based on all available information about possible variability of the quantity measured. In order to facilitate the obtaining of information helpful in the evaluation of Type B uncertainty, a new instrument metrological quality assessment method has been developed, which relies exclusively on the random model. The assessment result, in the form of an instrument accuracy class, can be used for estimation of the Type B uncertainty as presented in the accompanying examples.
Wydawca
Rocznik
Strony
28--31
Opis fizyczny
Bibliogr. 15 poz., tab., wykr., wzory
Twórcy
autor
  • Lodz University of Technology, Institute of Architecture of Textiles
autor
  • Lodz University of Technology, Institute of Architecture of Textiles
Bibliografia
  • [1] Evaluation of measurement data. Guide to the expression of uncertainty in measurement. JCGM, Geneva, 2008.
  • [2] Evaluation of measurement data. Supplement 1 to the “Guide to the expression of uncertainty in measurement” Propagation of distributions using a Monte Carlo method. JCGM, Geneva, 2008.
  • [3] Evaluation of measurement data. Supplement 2 to the “Guide to the expression of uncertainty in measurement”. Extension to any number of output quantities. JCGM, Geneva, 2011.
  • [4] Cox G. M., Siebert B. R. L.: The use of a Monte Carlo method for evaluating uncertainty and expanded uncertainty. Metrologia, vol. 43, pp. S178-S188, 2006.
  • [5] Müller M., Rink C.: On the convergence of the Monte Carlo block design. Metrologia, vol. 46, pp. 404-408, 2009.
  • [6] Tokarska M., Gniotek K.: Assessment of measurement uncertainty using Monte Carlo method based on STATISTICA (in Polish). Przeglad Elektrotechniczny, vol. 86(9), pp. 43-46, 2010.
  • [7] Tokarska M.: Evaluation of measurement uncertainty of fabric surface resistance implied by the Van der Pauw equation. IEEE Trans. Instrum. Meas., vol. 63(6), pp. 1593-1599, 2014.
  • [8] International vocabulary of metrology. Basic and general concepts and associated terms (VIM). JCGM, Geneva, 2012.
  • [9] Gniotek K.: A proposal for calculating the accuracy class of measuring tools (in Polish). Metrol. Meas. Syst., no. 12, pp. 397-398, 1992.
  • [10] Gniotek K., Cisło R., Kucharska-Kot J., Leśnikowski J.: The accuracy class of selected textile measuring instruments. Part I. (in Polish). Textiles Review-Textiles, Garments, Leather, no. 12, pp. 3-5, 1996.
  • [11] Gniotek K., Cisło R., Kucharska-Kot J., Leśnikowski J.: The accuracy class of selected textile measuring instruments. Part II. (in Polish) Textiles Review - Textiles, Garments, Leather, no. 1, pp. 11-12, 1997.
  • [12] Gniotek K., Leśnikowski J.: Accuracy class of virtual measuring instruments for textile uses. Scientific Bulletin of Technical University of Lodz, Textiles, vol. 58, pp. 313-321, 2000.
  • [13] Tokarska M., Gniotek K.: Accuracy class of the measuring instrument as a measure of uncertainty type B (in Polish). Proceedings of 10th Conference Problems and Progress in Metrology, PPM’14, June 15-18, 2014, Kościelisko, Poland, pp. 38-41.
  • [14] Pocket Handbook on Electrical Measurements. Siemens, Berlin, 1966.
  • [15] International Electrotechnical Vocabulary, IEC 60050, IEC, 2014.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-06e2d9e2-7d3c-4799-9076-50fe21b601a2
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