350 rub
Journal Achievements of Modern Radioelectronics №12 for 2025 г.
Article in number:
Simulation of protective shielding structures in the conditions of ionizing radiation from outer space
Type of article: scientific article
DOI: https://doi.org/10.18127/j20700784-202512-04
UDC: 537.591
Authors:

A.A. Dvilyansky1

1, 2 MIREA – Russian University of Technology (Moscow, Russia)
1 dvilyanskiy@mirea.ru

Abstract:

Necessity to develop methods of construction of shielding structures (SS) of computer equipment (CTE) on the basis of known models and methods used in the theory of electromagnetic shielding in order to further assess the effectiveness of their applicability in the conditions of ionizing radiation of outer space.

Objective – to carry out the simulation modeling of the EC to supplement the theory of electromagnetic shielding and to provide the connection between the theoretical form of knowledge and the practice of their constructive-technological design (CTP) and their subsequent practical application.

The simulation modeling allowed to estimate the quality of EC by efficiency indices at possible preservation of independent, relative to known models and methods, theoretical design.

Practical significance. Taking into account the specificity and purpose of the problem being solved, corresponding to the stages of development and CTP of ECs and the available theoretical basis for the study of these designs, the elements of the theory and methodology of synthesis are considered and disclosed within the framework of both already applied theoretical and theoretical methods and methods that complement them.

Pages: 18-23
For citation

Dvilyansky A.A. Simulation of protective shielding structures in the conditions of ionizing radiation from outer space. Achievements of modern radioelectronics. 2025. V. 79. № 12. P. 18–23. DOI: https://doi.org/10.18127/ j20700784-202512-04 [in Russian]

References
  1. Apollonskij S.M. Raschet elektromagnitnyh ekraniruyushchih obolochek. L.: Energoizdat. 1983. 156 s. [in Russian].
  2. Dvilyanskij A.A., Moiseev Yu.V. Obosnovanie podhoda k postanovke zadachi na razrabotku matematicheskogo metoda modelirovaniya parametrov ekraniruyushchej konstrukcii, obespechivayushchej funkcional'nuyu ustojchivost' komponentov ob"ektov kriticheskoj informacionnoj infrastruktury pri vozdejstvii elektromagnitnyh impul'sov. Avtomatizaciya i modelirovanie v proektirovanii i upravlenii: Bryanskij gosudarstvennyj tekhnicheskij universitet. 2020. № 1 (07). S. 17–25 [in Russian].
  3. Romashchenko M.A., Konovalov R.G., Vorob'ev M.E. Tekhnicheskie aspekty obespecheniya elektromagnitnoj sovmestimosti dlya podvizhnyh ob"ektov svyazi. Radiotekhnika. 2023. T. 87. № 8. S. 59–66. DOI: https://doi.org/10.18127/j00338486-202308-04 [in Russian].
  4. Osobennosti postobrabotki i vizualizacii v COMSOL Multiphysics. Rukovodstvo COMSOL. URL: https://www.comsol.ru/ [in Russian].
  5. Patent na izobretenie RU № 2541225 C2 RF. Ustrojstvo zashchity sredstv elektronno-vychislitel'noj tekhniki ot elektromagnitnyh izluchenij. 2015 [in Russian].
  6. Beketov S.M., Zubkova D.A., Gincyak A.M., Burluckaya Zh.V., Red'ko S.G. Sovremennye metody optimizacii i osobennosti ih primeneniya. Russian Technological Journal. 2025. V. 13. № 4. P. 78–94 [in Russian].
Date of receipt: 21.10.2025
Approved after review: 27.10.2025
Accepted for publication: 14.11.2025