Skip to main content Skip to main navigation menu Skip to site footer
##common.pageHeaderLogo.altText##
Izvestiya SFedU
Engineering sciences
  • Current
  • Previous issues
    • Archive
    • Issues 1995 – 2019
  • Editorial Board
  • About journal
    • Officially
    • The main tasks
    • Main sections
    • Specialties of the Higher Attestation Commission of the Russian Federation
    • Editor-in-Chief
ISSN 1999-9429 print
ISSN 2311-3103 online
  • Login
  1. Home /
  2. Search

Search

Advanced filters
Published After
Published Before

Search Results

Found one item.
  • DIGITAL MULTIPLIER-CONVERTING METHOD FOR MEASURING FREQUENCY INSTABILITY USING THE LABVIEW PROGRAMMING ENVIRONMENT

    Jacinto Mba Biye Nsue, V. P. Fedosov , S. V. Kucheryavenko
    2020-10-11
    Abstract ▼

    The article is aimed at measuring the parameters of the harmonic process by the multiplication-
    conversion method. The simulation was carried out through the use of the LabVIEW software
    environment, as applied to the digital multiplier-conversion method, the main points of which are
    presented in the form of a progressive chain: a) development of the first harmonic process; b) the
    multiplication of the indicator of the first harmonic process by four; c) the arrival of to
    the band-pass filter PF1 tuned to the highest frequency, in this case, d) simultaneously, using
    the generator Г2, a second source signal is generated; e) This oscillation is raised to the
    fifth power, f) using the filter PF2 tuned to a frequency of 5 , select the fifth harmonic g) The
    signals received at the outputs of the filters are added and the result of the sum is subjected to nonlinear
    transformation h) Then, from the resulting square of the sum of the signals and using a
    band-pass filter PF3, we extract only the low-frequency harmonic with the frequency i) Then,
    using the Hilbert transform, we extract the total instantaneous phase from the harmonic and it
    becomes the object of the derivative operation, which leads us to obtain the instantaneous frequency
    function, characterized by a fixed dispersion. j) The law of fluctuations of the frequency
    resulting from the use of multiplication-conversion operations is compared with a given frequency,
    and we proceed to determine the mathematical expectation and standard deviation. The conclusion
    about the frequency instability is based on the discrepancies obtained. Applying nonlinear
    transformations of oscillations of oscillators similar in instability and obtaining the oscillations of
    a given frequency in the same way, the measured frequency instability is established. If you apply
    this method many times to the oscillations of highly stable devices, you can develop an oscillation
    with increased instability, and then evaluate it with available measuring equipment. Thus, we bypass
    without high costs by performing this operation. Then, determine the initial instability by the
    formulas given in this article.

1 - 1 of 1 items

links

For authors
  • Submit article
  • Author Guidelines
  • Editorial Policy
  • Reviewing
  • Ethics of scientific publications
  • Open access policy
  • Supporting documents
Language
  • English
  • русский

journal

* not an advertisement

index

Индексация журнала
* not an advertisement
Information
  • For Readers
  • For Authors
  • For Librarians
Address: 347900, Taganrog, Chekhov St., 22, A-211 Phone: +7 (8634) 37-19-80 E-mail: iborodyanskiy@sfedu.ru
Publication is free
More information about the publishing system, Platform and Workflow by OJS/PKP.
logo Developed by RDCenter