Development of a new method for measuring the electric field strength based on a dual electro-induction sensor
https://doi.org/10.25206/1813-8225-2024-190-99-106
EDN: HLUWKG
Abstract
A new method for measuring electric field strength is proposed. The method is based on the mean value measurement method, which uses a dual electroinduction spherical sensor. The use of the dual sensor for the method implementation allows to extend the functionality of the method by mean value. The method of measurement by the mean value assumes simultaneous measurement of two values of intensity E1 and E2 in one point of electric field with opposite sign errors. As the theory of construction of the new method has shown, it is possible to determine not only the measurement result as an average of two values of the strengths, but also to estimate the error of the measurement result and tentatively determine the distance to the field source. In order to determine the distance to the field source, a coefficient of the ratio of the two found strengths at each point of the field is introduced, by which the empirical dependence of the relative distance to the field source is found. The relative distance is the ratio between the radius of the spherical sensor and the distance to the field source. By determining the relative distance at each measuring point according to this relationship and substituting it into the known expression for the error, the error of the result at the measuring point is determined. The relative distance is also used to determine the distance to the field source. Thus, the new method of measurement allows to increase the accuracy of measurement of electric field strength, determined by the relative distance to the source of the field.
About the Authors
S. V. BiryukovRussian Federation
Biryukov Sergey Vladimirovich, Doctor of Technical Sciences, Professor, Professor of Physics Department
AuthorID (SCOPUS): 7006438919
Omsk
A. V. Tyukin
Russian Federation
Tyukin Alexander Vladimirovich, Candidate of Technical Sciences, Associate Professor of Physics and Mathematics Department
AuthorID (SCOPUS): 57203100232
Omsk
L. V. Tyukina
Russian Federation
Tyukina Lyudmila Vladimirovna, Lecturer
Omsk
References
1. Xiao D., Ma Q., Xie Y. [et al.]. A Power-Frequency Electric Field Sensor for Portable Measurement // Sensors (Basel). 2018. Vol. 18 (4). 1053. DOI: 10.3390/s180410532. (In Engl.).
2. Suo C., Wei R., Suo C. [et al.]. Research on the ThreeDimensional Power Frequency Electric Field Measurement System // Journal of Sensors. 2021. Vol. 16. P. 1–15. DOI: 10/1155/2021/8859022. (In Engl.).
3. Berent G. N., Pleys I. R. Datchik elektricheskogo polya [Electric field sensor] // Pribory dlya nauchnykh issledovaniy. Instruments for Scientific Research. 1971. No. 6. P. 141–142. (In Russ.).
4. Gatman S. Dvoynoy izmeritel’ elektricheskogo polya s zashchitoy [Double electric field meter with protection] // Pribory dlya nauchnykh issledovaniy. Instruments for Scientific Research. 1968. No. 1. P. 45–49. (In Russ.).
5. Yurkevich V. M., Kondratyev B. L. O metodike izmereniya napryazhennosti i drugikh kharakteristik elektricheskogo polya [About the technique for measuring the intensity and other characteristics of the electric field] // Izmeritel’naya tekhnika. Measurement Techniques. 1980. No. 5. P. 57–59. (In Russ.).
6. Chugunov S. A., Yurkevich V. M. Rasshireniye zony izmereniya parametrov elektricheskogo polya pri primenenii zondovogo metoda [Expanding the area for measuring electric field parameters when using the probe method] // Izmeritel’naya tekhnika. Measurement Techniques. 1981. No. 1. P. 33–35. (In Russ.).
7. Kondrat’yev B. L., Yurkevich V. M. Izmereniya v elektricheskom pole s vyravnivaniyem potentsialov [Electric field measurements with potential equalization] // Trudy Moskovskogo energeticheskogo instituta. Proceedings Moscow Energy Institute. Moscow, 1979. Vol. 432. P. 20–22. (In Russ.).
8. Koldekott P., Devore R. V., Sebo S. A. Izmereniye elektricheskikh poley na podstantsiyakh sverkhvysokogo napryazheniya [Measuring electric fields at ultra-high voltage substations] // Elektricheskiye stantsii seti i sistemy. Ekspress-informatsiya. Electric Power Stations Networks and Systems. Express Information. 1977. No. 19. P. 10–26. (In Russ.).
9. Chauzy S., Magnes P. Mise au point d`un mesureur de champ electrique alternatif 50 // Rev. Gen. Elec. 1988. No. 7. P. 27–38. (In Engl.).
10. Biryukov S. V. Metod izmereniya napryazhennosti elektricheskogo polya putem vyravnivaniya sostavlyayushchikh [Method for measuring electric field strength by equalizing components] // Datchiki i preobrazovateli informatsii sistem izmereniya, kontrolya i upravleniya (Datchik-2002). Sensors and Information Converters for Measurement, Monitoring and Control Systems (Sensor–2002) / Ed. by V. N. Azarova. Moscow, 2002. P. 25–26. (In Russ.).
11. Biryukov S. V. Metody izmereniya napryazhennosti neodnorodnykh elektricheskikh poley vblizi istochnikov polya trekhkoordinatnymi datchikami [Methods for measuring the strength of non-uniform electric fields near field sources using three-coordinate sensors] // Izvestiya vuzov. Elektromekhanika. Russian Electromechanics. 2003. No. 4. P. 22–25. EDN: HTUFYJ. (In Russ.).
12. Korobkova V. P., Morozov Yu. A., Stolyarov M. D. [et al.]. Vozdeystviye elektricheskogo polya raspredelitel’nykh ustroystv 500 i 750 kV na obsluzhivayushchiy personal i sredstva dlya ego zashchity [Impact of the electric field of 500 and 750 kV switchgears on operating personnel and means for their protection] // Podstantsii peremennogo toka. AC Substations. Moscow. 1974. P. 33–43. (In Russ.).
13. Eggert S., Goltz S. NFM-1 ein aperiodisches Nahfeld – Stärkemeвgerät fűür Messunger an Hochfreguenzarвeitsplдtze [NFM-1 an aperiodic near field strength meter for measurements at high frequency locations] // Radio Fernsehen Elektronik. Radio Television Electronics. 1976. Vol. 25, no. 15. P. 488–490. (In Germ.).
14. Sukmanov V. I., Safonov V. I., Ilin A. N. [et al.]. Pribor dlya izmereniya napryazhennosti elektricheskogo polya [Electric field strength measuring device] // Elektricheskie stancii. Electric Stations. 1987. No. 6. P. 69–71. (In Russ.).
15. Patent 2743617 C1 Russian Federation, IPC G 01 R 29/12. Sposob izmereniya napryazhennosti elektricheskogo polya povyshennoy tochnosti [Method of highest accuracy for electric field measuring] / Biryukov S. V., Glukhoverya E. G. No. 2020118083. (In Russ.).
16. Patent 2773868 U1 Russian Federation, IPC G 01 R 29/08. Sposob izmereniya napryazhennosti elektricheskogo polya sdvoyennym datchikom [Method for measuring the electric field strength with a dual sensor] / Biryukov S. V., Tyukina L. V., Tyukin A. V. No. 2021120230. (In Russ.).
17. Tyukina L. V., Biryukov S. V., Tyukin A. V. Novyy podkhod k primeneniyu metoda izmereniy napryazhennosti elektricheskogo polya po srednemu znacheniyu [A new approach to application of the method of measuring electric field strength by average value] // Omskiy nauchnyy vestnik. Omsk Scientific Bulletin. 2022. No. 3 (183). P. 122–127. DOI: 10.25206/1813-8225-2022-183-122-127. EDN: GRAKRH. (In Russ.).
18. Patent 210806 U1 Russian Federation, IPC G 01 R 29/12. Sdvoyennyy datchik dlya izmereniya napryazhennosti elektricheskogo polya s sostavnymi chuvstvitel’nymi elementami [Dual sensor for measuring electric field strength with composite sensing elements] / Biryukov S. V., Tyukina L. V. No. 2022101437. (In Russ.).
19. Gluhoverya E. G. Datchiki napryazhennosti elektricheskogo polya na novykh fizicheskikh effektakh i yavleniyakh [Electric field strength sensors based on new physical effects and phenomena] // Aktualnyye problemmy sovremennoy nauki. Current Problems of Modern Science. Omsk, 2020. P. 47– 50. (In Russ.).
20. Shchiglovskiy K. B., Aksel’rod V. S. Pribory dlya izmereniya parametrov elektrostaticheskogo polya i ikh kalibrovka [Instruments for measuring electrostatic field parameters and their calibration] // Izmeritel'naya tekhnika. Measurement Techniques. 1978. No. 5. P. 63–65. (In Russ.).
21. Misakian M., Kotter F. R., Kahler R. L. Miniature ELF Electric Field Probe // Instruments for Scientific Research. 1978. Vol. 49, no. 7. P. 933–935. DOI: 10.1063/1.1135497. (In Engl.).
22. Shkarin Yu. P. Vliyaniye elektroustanovok vysokogo napryazheniya na okruzhayushchuyu sredu [Impact of high voltage electrical installations on the environment]. Moscow, 1988. 104 p. ISBN 5-283-02447-4. (In Russ.).
23. Patent 2776097 S1 Russian Federation, IPC G 01 R 29/12. Sposob izmereniya napryazhennosti elektricheskogo polya s ispol’zovaniyem datchika sdvoyennogo tipa [Method for measuring the electric field intensity using a dual-type sensor] / Biryukov S. V., Tyukina L. V., Tyukin A. V. No. 2021120706. (In Russ.).
24. Patent 2774654 С1 Russian Federation, IPC G 01 R 29/12. Sposob izmereniya napryazhennosti elektricheskogo polya datchikom sdvoyennogo tipa [Method for measuring the electric field strength by a dual-type sensor] / Biryukov S. V., Tyukina L. V., Tyukin A. V. No. 2021120704. (In Russ.).
Review
For citations:
Biryukov S.V., Tyukin A.V., Tyukina L.V. Development of a new method for measuring the electric field strength based on a dual electro-induction sensor. Omsk Scientific Bulletin. 2024;10(2):99-106. (In Russ.) https://doi.org/10.25206/1813-8225-2024-190-99-106. EDN: HLUWKG
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