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Erschienen in: Measurement Techniques 1/2023

31.05.2023 | RADIO MEASUREMENTS

Upgraded Algorithm for Implementing the Electronic Counting Frequency Meter Method for Measuring Frequency Deviation

verfasst von: I. V. Mogilev, B. V. Ivanov, A. V. Mylnikov

Erschienen in: Measurement Techniques | Ausgabe 1/2023

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Abstract

The ways of reducing the error of measurement methods of frequency deviation and expanding the measurement ranges of frequency deviation are considered. The possibilities of reducing the error of the electronic counting frequency meter method using digital signal processing algorithms are investigated. Digital signal processing algorithms are implemented in software developed by the authors on a modern spectrum analyzer. The algorithm for digital signal processing with the spectrum analyzer is described. Using a mathematical model embedded in the calculation algorithm of the developed software, the measurement error of frequency deviation is estimated. The possibility of using the electronic counting frequency meter method with the help of digital signal processing algorithms of the spectrum analyzer has been experimentally investigated. We consider the error sources in the classical method of the electronic counting frequency meter and possible ways of their elimination. Comparisons of the proposed implementation of the electronic counting frequency meter method with the classical method, which is implemented in the State Primary Standard of the unit of frequency deviation GET 166-2020, are carried out. The proposed implementation of the method has expanded the measurement range of frequency deviation towards small values in comparison with the classical method of electronic counting frequency meter. Limitations and prospects of application of the investigated method in reference means of measuring frequency deviation based on analog-to-digital converters are considered.

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Fußnoten
1
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Literatur
3.
Zurück zum Zitat Yu. D. Bolmusov, V. A. Martynov, and E. L. Skvortsov, Reference Installations K2-83 and K2-85 for Verification and Calibration of Amplitude and Frequency Modulation Meters, Vestnik Metrologa, No. 3, 32–36 (2007). Yu. D. Bolmusov, V. A. Martynov, and E. L. Skvortsov, Reference Installations K2-83 and K2-85 for Verification and Calibration of Amplitude and Frequency Modulation Meters, Vestnik Metrologa, No. 3, 32–36 (2007).
4.
Zurück zum Zitat Yu. D. Bolmusov, V. A. Martynov, E. L. Skvortsov, and N. V. Kuvaeva, Working Standard of the Frequency Deviation Unit, Zakonodatel’naya i prikladnaya metrologiya, No. 3, 22–25 (2002). Yu. D. Bolmusov, V. A. Martynov, E. L. Skvortsov, and N. V. Kuvaeva, Working Standard of the Frequency Deviation Unit, Zakonodatel’naya i prikladnaya metrologiya, No. 3, 22–25 (2002).
5.
Zurück zum Zitat A. B. Sergienko, Digital Signal Processing: Textbook Stipend., 3rd ed. St. Petersburg, BHV-Petersburg Publ., 2011, 502 p. A. B. Sergienko, Digital Signal Processing: Textbook Stipend., 3rd ed. St. Petersburg, BHV-Petersburg Publ., 2011, 502 p.
Metadaten
Titel
Upgraded Algorithm for Implementing the Electronic Counting Frequency Meter Method for Measuring Frequency Deviation
verfasst von
I. V. Mogilev
B. V. Ivanov
A. V. Mylnikov
Publikationsdatum
31.05.2023
Verlag
Springer US
Erschienen in
Measurement Techniques / Ausgabe 1/2023
Print ISSN: 0543-1972
Elektronische ISSN: 1573-8906
DOI
https://doi.org/10.1007/s11018-023-02189-7

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