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Journal Electromagnetic Waves and Electronic Systems №6 for 2022 г.
Article in number:
Formalization of approach to ensuring resistance of maintenance-free complex technical system to electromagnetic radiation
Type of article: scientific article
DOI: https://doi.org/10.18127/j5604128-202206-08
UDC: 62-761
Authors:

V.V. Lisickiy¹, I.P. Emelyanov², A.A. Semenov³, S.N. Bulychev⁴

1−4 Mozhaysky Military Space Academy (Saint Petersburg, Russia)

Abstract:

The main issues raised in this article lie in the field of ensuring the resistance of the maintenance-free complex technical system to electromagnetic radiation, and can form additional research directions using modern approaches of both theoretical and practical implementation, and are relevant. As is known, an unattended technical system is exposed to a large amount of electromagnetic radiation of various origin, which negatively affect the reliability of its systems, causing failures and failures under certain conditions. The research formed in this work assumes the solution of two particular tasks – the development of a model of the functioning of systems of the maintenance-free complex technical system when exposed to electromagnetic radiation and the development of a methodology for substantiating the requirements for a set of means to ensure durability. A deterministic method is proposed for assessing the resistance of the maintenance-free complex technical system to electromagnetic radiation, taking into account the spatial position of the radiation source. The mathematical conditions for the selection of a set of means to ensure the durability of the maintenance-free complex technical system are also determined, in order to ensure a total coefficient of durability of at least the required.

Pages: 59-64
For citation

Lisickiy V.V., Emelyanov I.P., Semenov A.A., Bulychev S.N. Formalization of approach to ensuring resistance of maintenance-free complex technical system to electromagnetic radiation. Electromagnetic waves and electronic systems. 2022. V. 27. № 6. P. 59−64. DOI: https://doi.org/10.18127/j15604128-202206-08 (in Russian)

References
  1. Akbashev B.B., Balyuk N.V., Kechiev L.N. Zashchita ob'ektov telekommunikatsii ot elektromagnitnykh vozdeistvii. M.: Grifon. 2014. 472 s. (in Russian)
  2. Dobykin V.D., Kupriyanov A.I., Ponomarev V.G., Shustov L.N. Radioelektronnaya borba. Silovoe porazhenie radioelektronnykh sistem. Pod red. A.I. Kupriyanova. M.: Vuzovskaya kniga. 2007. 468 s. (in Russian)
  3. Rikets L.U., Bridzhes Dzh.E., Mailetta Dzh. Elektromagnitnyi impuls i metody zashchity: per. s angl. Pod red. N.A. Ukhina. M.: Atomizdat. 1979. 328 s. SShA. 1976. (in Russian)
  4. Usychenko V.G., Sorokin L.N. Stoikost sverkhvysokochastotnykh radiopriemnykh ustroistv k elektromagnitnym vozdeistviyam. M.: Radiotekhnika. 2017. 288 s. (in Russian)
  5. Prishchepenko A.B. Vzryvy i volny. Vzryvnye istochniki elektromagnitnogo izlucheniya radiochastotnogo diapazona. M.: BINOM. Laboratoriya znanii. 2008. 208 s. (in Russian)
  6. Sorokin L.N., Usychenko V.G., Sherstyuk A.V. Vygoranie poluprovodnikovykh priborov pod vozdeistviem sverkhvysokochastotnykh impulsov i elektricheskikh videoimpulsov. Radiotekhnika i elektronika. 2010. T. 55. № 5. S. 631−638. (in Russian)
  7. Akishin A.I., Novikov L.S. Elektrizatsiya kosmicheskikh apparatov. M.: Znanie. 1985. 64 s. (Novoe v zhizni, nauke, tekhnike. Ser. «Kosmonavtika, astronomiya». № 3). (in Russian)
  8. Venttsel E.S. Teoriya veroyatnostei: Uchebnik dlya vuzov. Izd..10-e, ster. M.: Vysshaya shkola. 2006. 575 s. (in Russian)
  9. Gmurman V.E. Teoriya veroyatnostei i matematicheskaya statistika: Ucheb. posobie dlya vuzov. Izd. 9-e, ster. M.: Vysshaya shkola. 2003. 479 s. (in Russian)
  10. Aleksandrov E.S., Baranov L.T., Vaintraub A.I. Osnovy ekspluatatsii kosmicheskikh sredstv. Uchebnik dlya vuzov. SPB.: VIKU im. A.F. Mozhaiskogo. 2000. 499 s. (in Russian)
  11. Lisitskii V.V., Vorona S.G., Martynov A.M. Polimodelnyi kompleks pred'yavleniya trebovanii k kachestvu slozhnoi tekhnicheskoi sistemy na razlichnykh etapakh zhiznennogo tsikla. Uspekhi sovremennoi radioelektroniki. 2022.  № 10. S. 22−28. (in Russian)
Date of receipt: 26.10.2022
Approved after review: 16.11.2022
Accepted for publication: 28.11.2022