Skip to main content
Have a personal or library account? Click to login
Mathematical Modeling of the Digital Measuring Signal of Intelligent Flowmeters Cover

Mathematical Modeling of the Digital Measuring Signal of Intelligent Flowmeters

Open Access
|Jul 2013

References

  1. 1. Chernikh, I. (2008).,. St. Petersburg: DMK Press. (In Russian.)
  2. 2. Kuzin, L. (1962).. Moscow: Mashgiz. (In Russian).
  3. 3. Moskvin, G. (1991a). U.S. Patent No. 4,989,445. Washington, D.C.: U.S. Patent and Trademark Office.
  4. 4. Moskvin, G., (1991b). U.S. Patent No. 5,012,762. Washington, D.C.: U.S. Patent and Trademark Office.
  5. 5. Moskvin, G. (1991c). U.S. Patent No. 5,016,569. Washington, D.C.: U.S. Patent and Trademark Office.
  6. 6. Moskvin, G. (1992). U.S. Patent No. 5,161,483. Washington, D.C.: U.S. Patent and Trademark Office.
  7. 7. Moskvin, G. (1993a). Europaisches Patent Nr. 0372089. Patentblatt Nr. 90/24, Urkunde 15.12.93 (DE, FR, IT, GB, NL, SE). München.
  8. 8. Moskvin, G. (1993b). Europaisches Patent Nr. 0381762. Patentblatt Nr. 90/33, Urkunde 15.12.93 (DE, FR, GB, IT, NL, SE). München.
  9. 9. Moskvin, G. (1993c). Europaisches Patent, Nr. 0382852. Patentblatt Nr. 90/34, Urkunde 15.12.93 (DE, FR, GB, IT, NL, SE). München.
  10. 10. Moskvin, G. (1993d). Europaisches Patent Nr. 0406426. Patentblatt Nr. 91/02, Urkunde 15.12.93 (DE, FR, GB, IT, NL, SE). München.
  11. 11. Moskvin, G. (1993e). Europaisches Patent Nr. 0471076. Patentblatt Nr. 90/34, Urkunde 15.12.93 (DE, FR, GB, IT, NL, SE). München.
  12. 12. Moskvin, G. (1998). Artificial intelligence measuring, automatic control and expert systems in agriculture. In(pp. 176-181). Makuhari, Chiba, Japan.
  13. 13. Moskvin, G. (2003). Back propagation and transformation methods in artificial intelligence systems. In(pp. 367-376). Rezekne Higher Education Institution.
  14. 14. Moskvin, G., & Spakovica, E. (2005). Intelligent technology for the conformity assessment of agricultural products. In K. Elleithy, T. Sobh, A. Mahmood, M. Iskander, M. Karim (Eds.),(pp. 109-114). Springer.
  15. 15. Moskvins, G. (1996).. Zin. darbu kopsavilkums Dr.hab. inž. zin. grāda iegūšanai. Jelgava: LLU.
  16. 16. Moskvins, G., Spakovica, E., Moskvins, A., & Shahtarina, A. (2012). Laplace model of transformation for optimization of measuring signal in non-uniform flow of liquidIn(pp. 164-172). Jelgava: LLU.
  17. 17. Regtien, P.P.L. (2005). Systematic description of sensors. In(pp. 751-757). Wiley, Malden, MA, USA.
  18. 18. Regtien, P.P.L. (2005). Transducer fundamentals. In(pp. 717-724)Wiley, Malden, MA, USA.
  19. 19. Yamasaki, H. (1996).Yokogawa Research Institute, Tokyo, Japan: Elsevier.
DOI: https://doi.org/10.2478/plua-2013-0005 | Journal eISSN: 2256-0939 (formerly 2255-8535) | Journal ISSN: 1407-4427 (formerly 2255-8535)
Language: English
Page range: 41 - 47
Published on: Jul 3, 2013
Published by: Latvia University of Life Sciences and Technologies
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2013 Genadijs Moskvins, Evelina Spakovica, Artjoms Moskvins, Anastasija Shahtarina, published by Latvia University of Life Sciences and Technologies
This work is licensed under the Creative Commons License.