350 rub
Journal Achievements of Modern Radioelectronics №5 for 2024 г.
Article in number:
Rationale for the creation of multispectral data-processing system shock reconnaissance UAVs for use in modern warfare
Type of article: overview article
DOI: https://doi.org/10.18127/j20700784-202405-05
UDC: 623.7
Authors:

V.N. Nadtochiy1

1 Military Educational and Scientific Center of the Air Force Air Force Academy named after professor N.E. Zhukovsky and Yu.A. Gagarin (Voronezh, Russia)
1 nadtochiy_90@mail.ru

Abstract:

In recent years, in the technically developed countries of the world, special attention has been paid to the development of the theory and practice of warfare in a single information space, changing views on the training and use of armed forces in modern wars and conflicts. An important aspect in the combat management chain is the distribution and transmission of information to support the decisions of the command and control of the armed forces.

The purpose of the work is to identify typical tasks solved using a multispectral information and computing system of a reconnaissance and strike unmanned aerial vehicle (UAV).

The analysis of tasks and the target load of UAVs in modern wars is carried out. The data on modern UAVs are systematized, in particular, on the payload used, the features of combat use in military conflicts, the main disadvantages in the functioning of control systems to achieve specific combat tasks. The modern world concepts and technologies for the development of integrated UAV information systems are presented. The hierarchical principle of obtaining information in a multispectral system and its complex processing are considered.

The result of the functioning of a set of sensors in complex information processing will

be the possibility of forming solutions that reduce the amount of information transmitted through data transmission channels and simplify the operator's work.

Pages: 26-34
For citation

Nadtochiy V.N. Rationale for the creation of multispectral data-processing system shock reconnaissance UAVs for use in modern warfare. Achievements of modern radioelectronics. 2024. V. 78. № 5. P. 26–34. DOI: https://doi.org/10.18127/ j20700784-202405-05 [in Russian]

References
  1. Voennaya doktrina Rossiyskoy Federatsii ot 25 dekabrya 2014 g. URL: www.rg.ru [in Russian]
  2. Voennoe iskusstvo v lokal'nykh voynakh i vooruzhennykh konfliktakh. Pod red. generala-polkovnika A.S. Rukshina. M: Voennoe izdatel'stvo. 2008. [in Russian]
  3. Ashurbeyli I.R. i dr. Opyt i uroki boevogo primeneniya voysk i vooruzheniya PVO v lokal'nykh voynakh i vooruzhennykh konfliktakh. M. 2012. [in Russian]
  4. Rakhmanov A.A. Setetsentricheskie sistemy upravleniya: zakonomernye tendentsii, problemnye voprosy i puti ikh resheniya. Voennaya mysl'. 2011. № 3. S. 41–50. [in Russian]
  5. Bortovye sistemy upravleniya boevymi rezhimami sovremennykh i perspektivnykh samoletov. Kn. 1. Analiticheskiy obzor po materialam zarubezhnykh informatsionnykh istochnikov. Pod red. E.A. Fedosova. M.: Nauchno-informatsionnyy tsentr GosNIIAS. 2009. [in Russian]
  6. Nadtochiy V.N., Avramov A.V., Boldinov A.I. Analiz trebovaniy sovremennoy voyny po informatsionnomu i ognevomu obespecheniyu voysk. Novoe slovo v nauke i praktike: gipotezy i aprobatsiya rezul'tatov issledovaniy. Novosibirsk. 2016. S. 150–158. [in Russian]
  7. Kazar'yan B.I. Bespilotnye apparaty: tseli, zadachi, usloviya sozdaniya. Voennaya mysl'. 2012. № 2. S. 17–23. [in Russian]
  8. Krasnov A., Putilin A. Bespilotnye letatel'nye apparaty: ot razvedki k boevym deystviyam. Zarubezhnoe voennoe obozrenie. 2006. № 4–5. S. 41–47. [in Russian]
  9. Nadtochiy V.N., Avramov A.V., Boldinov A.I. Obosnovanie neobkhodimosti sozdaniya mnogospektral'noy informatsionno-vychislitel'noy sistemy razvedyvatel'no-udarnogo bespilotnogo letatel'nogo apparata dlya primeneniya v sovremennoy voyne. Sovremennaya nauka: aktual'nye problemy teorii i praktiki. 2016. № 12. S. 25–30. [in Russian]
  10. Jane’s Defence Equipment Library. 2001.
  11. Bortovye optiko-elektronnye sistemy voennoy aviatsii zarubezhnykh stran. Analiticheskiy obzor po materialam otkrytoy pechati. Kn. 1. Pod red. S.V. Yagol'nikova. Tver': 2 TsNII MO RF. 2006. [in Russian]
  12. Rostopchin V.V., Dmitriev M.L. Primenenie tsifrovykh opticheskikh sistem dlya bespilotnykh letatel'nykh apparatov. URL: www.uav.ru  [in Russian]
  13. Gruzman I.S. i dr. Tsifrovaya obrabotka izobrazheniy v informatsionnykh sistemakh: Ucheb. posobie. Novosibirsk: Izd-vo NGTU. 2000.
  14. Prett E. Tsifrovaya obrabotka izobrazheniy: Per. s angl. E. Prett. M.: Mir. 1982. Kn. 1. [in Russian]
  15. Oppengeymer A.V., Shafer R.V. Tsifrovaya obrabotka signalov: Per. s angl. M.: Svyaz'. 1979. [in Russian]
  16. Merkulov V.I., Samarin O.F., Chernov V.S. Novye rezhimy funktsionirovaniya radiolokatsionnykh sistem bespilotnykh letatel'nykh apparatov. Uspekhi sovremennoy radioelektroniki. 2015. № 9. S. 78–86. [in Russian]
  17. Sokolov I.A., Skichko D.Yu. Mnogofunktsional'naya bortovaya radiolokatsionnaya sistema dlya bespilotnogo letatel'nogo apparata. Kachestvo i zhizn'. 2015. № 1. S. 78–84. [in Russian]
  18. Koo V.C., Chan Y.K., Gobi V. A new unmanned aerial vehicle synthetic aperture radar for environmental monitoring. Progress In Electromagnetics Research. V. 122. 2012. P. 245–268.
  19. Verba V.S. i dr. Integrirovannye mnogodatchikovye kompleksy monitoringa okruzhayushchego prostranstva. Zhurnal radioelektroniki. 2015. № 4. URL: www.jre.cplire.ru  [in Russian]
  20. Mordvintsev E.V. Analiz sistem bespilotnykh letatel'nykh apparatov. Inostrannaya pechat' ob ekonomicheskom, nauchno-tekhnicheskom i voennom potentsiale gosudarstv-uchastnikov SNG i tekhnicheskikh sredstvakh ego vyyavleniya: Seriya: «Tekhnicheskoe osnashchenie spetssluzhb zarubezhnykh gosudarstv». 2011. № 8. S. 3–13. [in Russian]
  21. Anufriev O.N. i dr. Udarnye bespilotnye letatel'nye apparaty i ikh radiolokatsionnye sistemy. Uspekhi sovremennoy radioelektroniki. 2007. № 7. S. 51–66. [in Russian]
  22. Verba V.S. Aviatsionnye kompleksy radiolokatsionnogo dozora i navedeniya. Printsipy postroeniya, problemy razrabotki i osobennosti funktsionirovaniya. M.: Radiotekhnika. 2014. [in Russian]
  23. Sovremennoe sostoyanie i perspektivy razvitiya bespilotnykh aviatsionnykh sistem XXI veka. Analiticheskiy obzor po materialam zarubezhnykh informatsionnykh istochnikov. Pod red. E.A. Fedosova. M.: Nauchno-informatsionnyy tsentr GosNIIAS. 2012. [in Russian]
  24. Aviatsionnye sistemy radioupravleniya. Pod red. V.S. Verby, V.I. Merkulova. M.: Radiotekhnika. 2014. [in Russian]
  25. Nadtochiy V.N., Avramov A.V., Boldinov A.I. Analiz sovremennogo mirovogo opyta osnashcheniya bespilotnykh letatel'nykh apparatov tselevoy nagruzkoy, usloviy i printsipov upravleniya razvedyvatel'no-udarnym bespilotnym letatel'nym apparatom. Novye zadachi tekhnicheskikh nauk i puti ikh resheniya. Perm'. 2016. S. 124–128. [in Russian]
  26. Verba V.S., Merkulov V.I. Oblik informatsionno-vychislitel'noy sistemy bespilotnogo samoleta-istrebitelya. Uspekhi sovremennoy radioelektroniki. 2009. № 12. S. 25–31. [in Russian]
  27. Verba V.S. i dr. Integratsiya dannykh v mnogodatchikovykh bortovykh informatsionno-upravlyayushchikh sistemakh. Informatsionno-izmeritel'nye i upravlyayushchie sistemy. 2014. № 14. S. 32–43. [in Russian]
  28. Paramonov P.P., Zharinov I.O. Integrirovannye bortovye vychislitel'nye sistemy: obzor sovremennogo sostoyaniya i analiz perspektiv razvitiya v aviatsionnom priborostroenii. Nauchno-tekhnicheskiy vestnik informatsionnykh tekhnologiy, mekhaniki i optiki. 2013. № 2 (82). S. 1–17. [in Russian]
  29. Brazhnik V.M., Gerasimov G.I. Razvitie integrirovannykh kompleksov bortovogo oborudovaniya samoletov novogo pokoleniya. Informatsionno-izmeritel'nye i upravlyayushchie sistemy. 2008. № 3. S. 10–18. [in Russian]
  30. Nadtochiy V.N., Avramov A.V., Boldinov A.I. Analiz sovremennykh mirovykh kontseptsiy i tekhnologiy po razrabotke informatsionno-vychislitel'nykh sistem razvedyvatel'no-udarnykh bespilotnykh letatel'nykh apparatov. Novye tekhnologii i problemy tekhnicheskikh nauk. Krasnoyarsk. 2016. № 3. S. 108–111. [in Russian]
  31. Verba V.S. Upravlenie informatsionnymi vozmozhnostyami mnogofunktsional'nykh bortovykh radiolokatsionnykh kompleksov. Radiotekhnika. 2007. № 10. S. 9–13. [in Russian]
  32. Verba V.S., Merkulov V.I. Sovmestnaya obrabotka dannykh v mnogodatchikovykh informatsionnykh sistemakh vozdushnogo bazirovaniya. Radiotekhnika. 2015. № 3. S. 137–141. [in Russian]
Date of receipt: 10.04.2024
Approved after review: 22.04.2024
Accepted for publication: 30.04.2024