Preview

Izmeritel`naya Tekhnika

Advanced search
Open Access Open Access  Restricted Access Subscription Access

Basis of the phase controlled AC bridges

https://doi.org/10.32446/0368-1025it.2021-6-37-43

Abstract

This work describes the new approach to the improving of the accuracy of the bridge impedance measurements. By this approach the bridge balance in wide impedance range uses the control of the phases of the aggregate of the cardinal signals only. The optimal structure and algorithm of the control of this aggregate of the cardinal signals is determined. Using this approach accurate impedance meters with low size and price could be developed. In the limit, this approach gets us possibility to develop fully integrated impedance meters. Report shortly describes universal impedance meters with phase control, their balance and calibration algorithms.

About the Authors

D. M. Surdu
Kray Technologies Inc.
Ukraine

Dmytro М. Surdu

Kiev



M. N. Surdu
Academy of Metrology of Ukraine
Ukraine

Michael N. Surdu

Kiev



References

1. Hague B., Alternating current bridge methods, revised by T. R. Foord, 6th edition, Boston, MA, Pitman, 1971, 309 p.

2. Carandeev K., Special methods of electrical measurements, Мoscow, Leningrad, Gosenergoizdat Publ., 1963, 344 p. (In Russ.)

3. Awan S., Bryan Kibble B., Schurr J., Coaxial Electrical Circuits for Interference-Free Measurements, ed. The Institution of Engineering and Technology, 321 p., 2011, available at: https://shop.theiet.org/coaxial-elect-circuits(accessed:08.11.2013).

4. Grinevich F.,Grokholscky А., Sobolevsky K., Tsapencko М., Transformer measuring bridges, ed. by Carandeev K., Мoscow, Energy Publ., 1970, 280 p.

5. Murphy E., Slattery C., All About Direct Digital Synthesis, Analog Dialogue, Ask The Application Engineer–33, June 2017, Version V1.0, available at:https://www.analog.com/en/analog-dialogue/articles/all-about-direct-digital-synthesis.html#(accessed:19.12.2013).

6. Callegaro L., D’Elia Bava E., Galzerano Svelto C., Polyphase Synthesizer for Unlike-Impedance Intercomparison System, CPEM 2002, Conference Digest., 16–21 June, 2002, Ottawa, Canada, pp. 176–177.

7. Callegaro L., Electrical Impedance: Principles, Measurement, and Applications, Taylor & Francis Group, January 2012, 308 p.https://doi.org/10.1201/b13069

8. Lee J., Schurr J., Nissila J., Palafox L., Behr R., Metrologia, 2010, vol. 47, nо. 4, р. 011. https://doi.org/10.1088/0026-1394/47/4/011

9. Overney F., Jeanneret B., Metrologia, 2018, vol. 55, nо. 5. https://doi.org/10.1088/1681-7575/aacf6c

10. De Aguilar J. D., Salinas J. R., Kieler O. F., Mendez A., et. al., Measurement Science and Technology, 2019, vol. 30, nо. 3. https://doi.org/10.1088/1361-6501/aafb27

11. Bronshtein I., Semendiaev К., Handbook on mathematics, Мoscow, Nauka Publ., 1986, 544 p. (In Russ.)

12. Grinevich F., Surdu М., Pre cision variational AC measuring systems, Kiev, Naukova Dumka Publ., 1989, 209 p. (In Russ.)

13. Surdu M., Lameko A., Karpov I., Koffman A., Kinard J., Klonz M., Melcher J., Tarlowsky A., Complex of bridge comparators for impedance unit traceability and impedance measurements, Digest of 2006 Conference on Precision Electromagnetic Measurement, Torino, Italy, 2006, pp. 520–521.

14. Surdu M., Surdu D., Ukrain Patent no. 102277 (25.06.2013).

15. Surdu M., Surdu D., Wide Range Bridge-Comparator for Accurate Impedance Measu rements on Audio- and Low Frequencies, CPEM-2014, Rio-da-Janeiro, 23–26 August, 2014.

16. Hansen R., Phased antenna arrays, 2d edition, Wiley, 2009, 571 p.

17.

18.

19.

20.


Review

For citations:


Surdu D.M., Surdu M.N. Basis of the phase controlled AC bridges. Izmeritel`naya Tekhnika. 2021;(6):37-43. (In Russ.) https://doi.org/10.32446/0368-1025it.2021-6-37-43

Views: 137


ISSN 0368-1025 (Print)
ISSN 2949-5237 (Online)