Skip to main content
Log in

Automation of verification and calibration of digital electric-measuring devices: New capabilities

  • Automation in Industry
  • Published:
Automation and Remote Control Aims and scope Submit manuscript

Abstract

This paper analyzes automatic verification of modern measuring means for electrical quantities. The author considers the capabilities of automation subject to verifying procedures for digital electric-measuring devices, based on a new approach according to the principle of self-verifiability. The technical and economic efficiency of realizing this approach during postproduction testing of these devices and their operation is evaluated.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Similar content being viewed by others

References

  1. Konyukhov, A.G., Automation of Verification: Outdated Approaches and Perspective Principles, Izmerit. Tekh., 1987, no. 11.

    Google Scholar 

  2. Vladimirov, V.L., Andrusyak, S.A., and Yasenetskii, E.I., Metody i algoritmy avtomatizirovannoi poverki sredstv izmerenii elektricheskikh velichin s kodovym vykhodom (Automatic Verification Methods and Algorithms of Code-output Measuring Means for Electrical Quantities), Moscow: Izd. Standartov, 1989.

    Google Scholar 

  3. Taymanov, R., Sapozhnikova, K., and Druzhinin, I., Sensor Devices with Metrological Self-Check, Sens. Transducers J., 2011, vol. 10 (special issue), no. 2.

  4. Agamalov, Yu.R., Design Capabilities for Multifunctional Measuring Means Based on the Principle of Self-Verifiability, Metrologiya, 2007, no. 12.

    Google Scholar 

  5. Agamalov, Yu.R., A New Approach to Design and Verification of Measuring Means, Tr. nauchn.-tekhn. konf. “Tekhnicheskie i programmnye sredstva sistem upravleniya, kontrolya i izmereniya” (Proc. Sci.-Techn. Conf. “Hardware and Software Tools for Systems of Control, Inspection and Measurement”), Moscow: Inst. Probl. Upravlen., 2008.

    Google Scholar 

  6. Agamalov, Yu.R., On Realization of the Principle of Self-Verifiability in Measuring Devices of Single Physical Quantities, Metrologiya, 2011, no. 9.

    Google Scholar 

  7. Agamalov, Yu.R., Optimization of Output Control of Multifunctional Immitance Measurement Means on the Basis of Adaptation Principle, Datch. Sist., 2007, no. 5, pp. 2–9.

    Google Scholar 

  8. Agamalov, Yu.R., Bobylev, D.A., Borovskikh, L.P., and Kneller, V.Yu., Virtual Self-Verifying Immitance Analyzer with Adaptive Functionalities, Datch. Sist., 2008, no. 7, pp. 21–26.

    Google Scholar 

  9. Williams, D.F., Lewandowski, A., LeGolvan, D., Ginley, R., et al., Use of Electronic Calibration Units for Vector-Network-Analyzer Verification, The 74th ARFTG Microwave Measurement Conf., Boulder, 2009.

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to Yu. R. Agamalov.

Additional information

Original Russian Text © Yu.R. Agamalov, 2012, published in Avtomatizatsiya v Promyshlennosti, 2012, No. 12, pp. 57–61.

Rights and permissions

Reprints and permissions

About this article

Check for updates. Verify currency and authenticity via CrossMark

Cite this article

Agamalov, Y.R. Automation of verification and calibration of digital electric-measuring devices: New capabilities. Autom Remote Control 76, 133–138 (2015). https://doi.org/10.1134/S0005117915010129

Download citation

  • Received:

  • Published:

  • Issue Date:

  • DOI: https://doi.org/10.1134/S0005117915010129

Keywords

Navigation