A Model of the Dynamic Error as a Measurement Result of Instruments Defining the Parameters of Moving Objects
By: D. Dichev, H. Koev, T. Bakalova and P. Louda
References
- [1] Dichev, D.A., Golemanova, S.H. (2010). Characteristics of the results upon measuring signals representing random processes. In Metrology and Metrology Assurance : XX National Scientific Symposium, 10-14 September 2010, Sazopol, Bulgaria, 51-57.
- [2] Dichev, D.A., Koev, H.C. (2012). Increase of dynamic accurasy in measurement systems of parameters of moving objects. In Metrology and Metrology Assurance : XXII National Scientific Symposium, 11-15 September 2012, Sazopol, Bulgaria, 57-64.
- [3] Nazarov, N.G. (2002). Metrology. Basic Concepts and Mathematical Models. Moscow : Vishshaya Shkola.
- [4] Pronkin, N.S. (2003). Basics of Metrology for Dynamic Measurements. Moscow : Logos.
- [5] Granovskij, V.А. (1984). Dynamic Measurements. St. Petersburg : Energoatomizdat.
- [6] Joint Committee for Guides in Metrology. (2008). International vocabulary of metrology - Basic and general concepts and associated terms (VIM). JCGM 200:2008.
- [7] Dichev, D.A. (2008). Mathematical models of parameters defining a mode of measurement. In Metrology and Metrology Assurance : XVIII National Scientific Symposium, 9-12 September 2008, Sazopol, Bulgaria, 86-92.
- [8] Ventcel, E.S., Ovcharov, L.A. (2007). Random Processes Theory and Its Engineering Application. Moscow : Vishaya Shkola.
- [9] Kamensky, M., Kovac, K. (2011). Correction of ADC errors by additive iterative method with dithering. Measurement Science Review, 11 (1), 15-18.
- [10] Hegeduš, H., Mostarac, P., Malarić, R. (2011). Comparison of RMS value measurement algorithms of non-coherent sampled signals. Measurement Science Review, 11 (3), 79-84.
- [11] Venkatesh, A.K., Mathivanan, N. (2012). Design of MEMS accelerometer based acceleration measurement system for automobiles. Measurement Science Review, 12 (5), 189-194.
- [12] Dichev, D., Koev, H., Bakalova, T., Louda, P. (2013). An algorithm for improving the dynamic accuracy in systems for measuring the parameters of moving objects. International Journal of Engineering, Business and Enterprise Applications, 5 (2), 1-9.
- [13] Sveshnikov, A.A., Rivkin, S.S. (1974). Probability Methods in the Applied Gyroscope Theory. Moscow : Nauka.
- [14] Sveshnikov, А.А. (2011). Applied Methods from the Random Functions Theory. Moscow : Lan.
- [15] Baskakov, S.I. (2000). Radio Engineering Chains and Signals. Moscow : Vishaya Shkola.
- [16] Stepetov, A.G. (2006). Theory, Calculation and Design of Measuring Instruments. Moscow : Standartinform.
DOI: https://doi.org/10.2478/msr-2014-0025 | Journal eISSN: 1335-8871
Language: English
Page range: 183 - 189
Submitted on: Nov 19, 2013
Accepted on: Jul 31, 2014
Published on: Aug 23, 2014
Published by: Slovak Academy of Sciences, Institute of Measurement Science
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open
Keywords:
Related subjects:
© 2014 D. Dichev, H. Koev, T. Bakalova, P. Louda, published by Slovak Academy of Sciences, Institute of Measurement Science
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.