FEATURES OF TRANSFERRING SIZE OF LENGTH UNIT FROM WORKING STANDARD TO MEASURING DEVICE

1
Національний університет «Львівська політехніка»
2
Національний університет “Львівська політехніка”

The paper examines the characteristics of accuracy when transferring the size of a unit of length from a standard to an industrial measuring device. Based on the processing of the calibration results, the peculiarities of using different transfer schemes within the limits of the current regulatory document were considered. The problems that arise are studied. To ensure an effective scheme of transfer and unity of measurements, the expediency of application of the method of RMS deviations in the analysis of the obtained measurement results is shown.

  1. DSTU 3741:2015. Metrology. State verification scheme for means of measuring length, 2015 (in Ukrainian). https://online.budstandart.com/ua/catalog/doc- page?id_doc=61978
  2. M. Nadi, C. Marco, M. Kouider, J. Prado, and D. Kourtiche, Embedded system design and implementation of standard auto-calibrated measurement chain, Int. Journ. on Smart Sensing & Intel. Systems, vol.1, No.1, March 2008, pp.21-33.       https://www.researchgate.net/publication/26850144_ Embedded_system_design_and_implementation_of_ standard_auto-calibrated_measurement_chain/fulltext/ 0e6058e4f0c46d4f0ab335a8/Embedded-system-design-and-implementation-of-standard-auto-calibrated- measurement-chain.pdf
  3. F. M. Mirzaei. Extrinsic and Intrinsic Sensor Calibration. A Diss-n Submit. to Faculty of Grad. School of Un-ty of Minnesota, 2013 https://core.ac.uk/download/pdf/ 76345447.pdf
  4. The Quantum Hall Effect, M.E. Cage, K. Klitzing, A.M. Chang, F. Duncan, M Haldane… – 2012 – books. google.com
  5. Cyber-Physical Systems and Metrology 4.0. Co-editors S. Yatsyshyn,   B.Stadnyk,              2021,       IFSA       Publishing. https://books.google.com.ua/books/about/Cyber_Physical_ Systems_and_Metrology_
  6. W. Nawrocky, Quantum Voltage Standard, in Introduction to Quantum Metrology, pp 85–118, https://link.springer. com/chapter/10.1007/978-3-030-19677-6_4
  7. Nat. Phys. Lab., Time and Frequency, https://www. npl.co.uk/products-services/time-frequency
  8. D. Gajski, S. Abdi, A. Gerstlauer, G. Schirner, Embedded system design, Modeling, Synthesis and Verification, Springer, 2009. https://www.cin.ufpe.br/~rab/Gajski %20 D.D. %20et %20al. %20Embedded %20System %20Desig n %20- %20Modeling, %20Synthesis %20and % 20Verification %20(Springer, %202009)(1441905030).pdf
  9. I. Köchert, "Ultrastable metrology laser at 633 nm using an optical frequency comb". In: Optical Micro-and Nanomet- rology VII. International Society for Optics and Photonics,p. 106780S, 2018. https://doi.org/10.1117/12.2306907
  10. S.Yatsyshyn, I,Nazarkevych, R.Mastylo, MEM, Calibration of the Ultrasonic Sensor-Range Finder by the Laser Interferometer,                             vol.81,     No.4,     pp.     10-17,     2020, https://science.lpnu.ua/istcmtm/all-volumes-and- issues/volume-81-no4-2020/calibration-ultrasonic-sensor- range-finder-laser
  11. Types of Robot Sensors. https://www.javatpoint.com/types- of-robot-sensors
  12. Law of Ukraine "On Metrology and Metrological Activities" dated June 5, 2014 № 1314 – VII, (in Ukrainian). https://www.rrt.ua/govsupport/ index/lawsone/ lang/uk?id=94
  13. DSTU 2681-94 Metrology. Terms and definitions. With Amendment (IPS No. 8-96), State Standard of Ukraine, 1994. (in Ukrainian). https://dtp.lg.ua/Dokumentacija % 20i %20oformlenie/DSTU_2681- 94_metrologiya._terminy_i_opredeleniya.pdf
  14. PEKO prospectus https://peko.com.ua/distance-sensors/ ultrasonic-distance-sensors
  15. Bosch     company     prospectus.    https://www.automaster. net.ua/artykuly/ultrazvukovi-datchiki-bosch-6-pokolinnya- vzhe-dostupni-v-ukrayini,55525
  16. L.L. Beranek, “Acoustical measurements,” AIP, Woodbury, NY, 1988. https://www.phon.ucl.ac.uk/home/dept/library/ pling.htm
  17. V. Magori, “Ultrasonic sensors in air,” IEEE Ultrasonic symposium, Proceedings, pp. 471-481 (1994). · DOI:10.1109/ULTSYM.1994.401632
  18. IFM products prospect https://www.ifm.com/ua/uk/ product/UGT593?tab= details
  19. Metrology and Measurement Technics. Editor Ye. Polishchuk, Lviv, «Beskyd-Bit», 2003 https://librarygo. lpnu.ua/?elbook=metrologiya-ta-vymiryuvalna-tehnika
  20. H. Zhang, J. Wang, C. Guo, Tool Frame Calibration for Robot-Assisted Ultrasonic Testing, Sensors, 2023, 23, 8820. https://doi.org/10.3390/s23218820 https://www.mdpi.com/journal/sensors
  21. S.P. Yatsyshyn, B.P. Yatsyshyn. Fire detectors as means of information and measurement technology, Bulletin of LSU life safety, No.4, 2010, pp.70-74. (in Ukrainian). https://media. neliti.com/media/publications/388792-none-dc7bba2f.pdf
  22. M. Mykiichuk, Metrological support of production, Lviv, Ukraine, Lviv Polytechnic Publishing House, 2017. (in Ukrainian), https://vlp.com.ua/node/17379
  23. Trends in quality in the analytical laboratory. I. Traceability and measurement uncertainty of analytical results, July 2004, TrAC Trends in Analytical Chemistry 23(7):480-490, DOI: 10.1016/S0165-9936(04)00733-2, Authors: Isabel VJ Taverniers, Marc De Loose, Erik Van Bockstaele https://www.researchgate.net/publication/222426151_Trend s_in_quality_in_the_analytical_laboratory_I_Traceability_and_measurement_uncertainty_of_analytical_results
  24. Jung-Hwan Kim, Advanced measurement and diagnosis of the effect on the underlayer roughness for industrial standard metrology, Scientific Reports, vol. 9, Article number: 1018, 2019. DOI:10.1038/s41598-018-36991-z https://www.researchgate.net/publication/330759880_ Advanced_measurement_and_diagnosis_of_the_effect_on_th e_underlayer_roughness_for_industrial_standard_metrology
  25. M. Dorozhovets, Processing of measurement results, Lviv, Ukraine, Lviv Polytechnic Publishing House, 2007, (in Ukrainian)
  26. COOMET R/GM/32:2017. Calibration of measuring instruments. Algorithms for processing measurement results and estimating uncertainty. https://easc.by/novosti/448-13- noyabrya-2023-goda-provedeno-23-rg-odm-ntkmetr
  27. Publication Reference EA-4/02 M:2022 Evaluation of the Uncertainty of Measurement in Calibration, 4th April 2022. https://www.accredia.it/en/documento/ea-4-02-rev-03- evaluation-of-the-uncertainty-of-measurement-in- calibration/