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Substantiation of the Possibility to Use the Electromagnetic Shields Based on Powdered Aluminum Oxides to Reduce the Electromagnetic Radiation Energy of Electronic Devices

https://doi.org/10.35596/1729-7648-2022-20-7-48-55

Abstract

The article introduces the results of the experimental substantiation of the possibility to use the electromagnetic shields based on powdered aluminum oxides to reduce the electromagnetic radiation energy introduced by electronic devices. To achieve this goal, a methodology has been developed for assessing the effect of materials on the electromagnetic radiation level of electronic devices, and a methodology for estimating the radius of the controlled zone of the secondary electromagnetic radiation of computer equipment has been systematized. In accordance with the indicated methods, the study has been carried out, based on the results of which it was determined that electromagnetic shields containing the composite coating based on powdered aluminum oxides and iron oxide provide suppression of the electromagnetic radiation energy of electronic devices, as well as a reduction of up to 2 times the radius of the controlled zone of the secondary electromagnetic radiation of computer equipment. Recommendations for the practical application of the composite coatings based on the powdered alumina and iron oxide have been developed. In accordance with these recommendations, such coatings can be used in the process of manufacturing or improving the technical and functional properties of electromagnetic shields designed to ensure the electromagnetic compatibility of electronic devices, as well as to solve problems related to the information security.

About the Authors

D. I. Penialosa Ovalies
Belarusian State University of Informatics and Radioelectronics
Belarus

 Penialosa Ovalies Deivis Isaias, Intern of Information Protection Department 

 220013, Republic of Belarus, Minsk, P. Brovka St., 6 



O. V. Boiprav
Belarusian State University of Informatics and Radioelectronics
Belarus

Boiprav O. V., Cand. of Sci., Associate Professor, Associate Professor at Information Protection Department 

Minsk 



M. V. Tumilovich
Belarusian State University of Informatics and Radioelectronics
Belarus

Tumilovich M. V., Dr. of Sci., Associate Professor, Head of the Department for Training Highly Qualified Personnel  

 Minsk 



A. V. Gusinsky
Belarusian State University of Informatics and Radioelectronics
Belarus

Gusinsky А. V., Cand. of Sci., Associate Professor, Head of the Center 1.9 of R&D Department 

Minsk 



P. I. Baltrukovich
Belarusian State University of Informatics and Radioelectronics
Belarus

Baltrukovich P. I., Cand. of Sci., Associate Professor at the Department of Engineering Psychology and Ergonomics  

Minsk 



References

1. Penialosa Ovalies D. I., Boiprav O. V., Tumilovich M. V., Lynkou L. M. (2021) Electromagnetic Radiation Shielding Composite Coatings Based on Powdered Alumina and Iron Oxides. Doklady BGUIR. 19 (3), 104–109. DOI: 10.35596/1729-7648-2021-19-3-104-109.

2. Boiprav O. V., Penalosa Ovalles D. I., Tumilovich M. V., Lynkov L. M. (2021) A Method for Modifying the Composition of Non-Combustible Composite Coatings Based on Powdered Aluminum Oxides for Electromagnetic Screens. Pribory = Devices. (1), 47–54 (in Russian).

3. Grebennikov I. S., Savchenko A. G., Zaitseva M. P., Muradova A. G., Yurtov E. V. (2018) Structure and Magnetic Properties of Iron Oxide Nanopowders and Hybrid Core – Shell Nanopowders Based on Them. Izvestija Rossijskoj Akademii Nauk. Serija Fizicheskaja. 9 (82), 1343–1354 (in Russian).

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6. Scholz N. N., Piskarev K. A. (1966) Ferrites for Radio Frequencies. Moscow, Energy Publ. (in Russian).

7. Mikhailin Yu. A. (2008) Special Polymer Composite Materials. St. Petersburg, Scientific Bases and Technologies (in Russian).

8. Apollonsky S. M. (2014) Electromagnetic Fields in Technical Devices. Saarbrücken, Palmarium Academic Pub. (in Russian).

9. Efanov E. I., Tikhomirov A. A. (2012) Electromagnetic Compatibility of Radio Electronic Means and Systems. Tomsk, Tomsk State University of Control Systems and Radioelectronics (in Russian).

10. Barsukov S. V. (1999) Integrated Protection for Special Shielded Rooms. Special'naja Tehnika. (6), 21–25 (in Russian).


Review

For citations:


Penialosa Ovalies D.I., Boiprav O.V., Tumilovich M.V., Gusinsky A.V., Baltrukovich P.I. Substantiation of the Possibility to Use the Electromagnetic Shields Based on Powdered Aluminum Oxides to Reduce the Electromagnetic Radiation Energy of Electronic Devices. Doklady BGUIR. 2022;20(7):48-55. (In Russ.) https://doi.org/10.35596/1729-7648-2022-20-7-48-55

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ISSN 1729-7648 (Print)
ISSN 2708-0382 (Online)