Analysis of trends and forecasts of development of military radar for air target detection for the medium-term

Authors
Keywords:
Array, Array, Array, Array, Array
Abstract

The article presents the results of the analysis of the current state of radar technology, the needs of the airspace control system and the main trends in the development of military radar. According to the results of the analysis, the main trends in the development of military radar are presented at present, namely: complete use of frequency resources with simultaneous use in radar stations of several frequency ranges, widespread use of phased antenna lattices, transition to fully solid-state transmitters with broadband signals, the ability to use in double-voltage systems Appointment, improvement of operational characteristics. On the basis of the results obtained, priority directions of improvement of the park of weapons and military equipment of radio engineering troops of the Air Forces of the Armed Forces of Ukraine on the medium-term perspective are formed. A common feature of the priority direction of the weapons and military equipment development of the radio-technical troops of the Air Forces of the Armed Forces of Ukraine in the medium term is the transition to fully solid-state radars with broadband signals and the widespread use of antenna arrays, as well as the creation of multifunctional and multi-mode radars, which provide for the possibility of adaptation to a specific tactical situation, the choice of the optimal mode of operation (the type and structure of the probing signal, the formation of the required number of radiation pattern beams, adaptive scanning of space, the use of optimal signal processing methods, etc.).

Author Biographies
  1. M. M. Nikitin, Limited Liability Company “Skynet-Ltd”

    Candidate of Technical Sciences
    Associate Professor
    Deputy Director

  2. Danil Belyaev, Central Scientific Research Institute of Armament and Military Equipment of the Armed Forces of Ukraine

    Ph.D
    Lead Researcher of Central Scientific Research Institute of Armament and Military Equipment of Armed  Forces of Ukraine
    Kyiv, Ukraine

  3. Andrii Zirka, Central Scientific Research Institute of Armament and Military Equipment of the Armed Forces of Ukraine

    Ph.D
    Chief of Research Development Department of Radio Equipment Research management of Armament  and Military Equipment of the Air Force of Central Scientific Research Institute of Armament and  Military Equipment of Armed Forces of Ukraine
    Kyiv, Ukraine

  4. Rimma Semenyuk, Central Scientific Research Institute of Armament and Military Equipment of the Armed Forces of Ukraine

    Research Associate of Central Scientific Research Institute of Armament and Military Equipment of Armed  Forces of Ukraine
    Kyiv, Ukraine

  5. Vladyslav Tiutiunnyk, Ivan Kozhedub Kharkiv National Air Force University

    Candidate of Technical Sciences, Senior Research,
    Chief of Scientific Research Department of Ivan Kozhedub Kharkiv National Air Force University, Kharkiv,  Ukraine

  6. Gennadii Kamaltynov, Ivan Kozhedub Kharkiv National Air Force University

    Candidate of Technical Sciences
    Senior Research
    Lead Researcher of Ivan Kozhedub Kharkiv National Air Force University, Kharkiv, Ukraine

References

The Armed Forces of Ukraine (2020), Viziia Povitrianykh Syl 2035 [Visiia of Air Forces 2035], Vinnytsia. 44 р.

Barton, D.K. (2005). Radar System Analysis and Modeling. Norwood. USA : Artech House. Inc. 566 p.

Shyrman, Ya. (2007), “Radyoelektronnye systemy: Osnovy postroeniia i teoriia: spravochnykˮ [Radioelectronic Systems: Fundamentals of Construction and Theory. Directory], Radiotechnics, M. 512 р.

Radar Handbook / M. I. Skolnik ed. 3d ed. New York : McGraw-Hill. 2008. 1348 p.

Bielavin, O., Klymchenko, V., Kamaltynov, H. & Maliarenko, O. (2014) “Napriamky rozvytku radiolokatsiinykh zasobiv rozvidky ta kontroliu povitrianoho prostoruˮ [Directions of development of radar means of reconnaissance and airspace control], Coll. of scientific works of Kharkiv Nat. Univ. of the Air Force. Kharkiv. No. 04(40). Pp. 47—52.

Boord, W.J. & Hofman, J.B. (2016). Air and Missile Defense Systems Engineering. Boca Raton (USA) : CRC Press Taylor & Francis Group. 268 p. DOI: https://doi.org/10.1201/b19671

Hryb, D., Kamaltynov, H., Klymchenko, V. & Tiutiunnyk, V. (2017), “Analiz naukovo-tekhnichnoho suprovodzhennia rozvytku ozbroiennia ta viiskovoi tekhniky RTVˮ [Analysis of scientific and technical support for the development of armaments and military equipment of radio troops], Coll. of scientific works of Kharkiv Nat. Univ. of the Air Force. Kharkiv. No. 05(54). Pp. 33—37.

Bielavin, O., Klymchenko, V., Kamaltynov, H. & Maliarenko, O. (2015), “Svitovi tendentsii rozvytku radiolokatsiinykh zasobiv kontroliu povitrianoho prostoru ˮ [Global trends in the development of radar means of airspace control], Science and Technology. No 01. Pp. 48—53.

Krylov, E. (2018), ”Perspektyvy rozvytku radiolokatsiynykh stantsii zbroynykh syl inozemnykh derzhav” [Prospects for the development of radar stations of the armed forces of foreign states], Foreign Military Review. No 2. Pp. 37—43.

UkrOboronProm Radar. Radio communication and air defence systems. Catalogue. 2019. 1 CD-ROM.

Intern. Exhibition Center (2017), “XIV Mizhnarodna spetsializovana vystavka «Zbroia ta bezpeka 2017»ˮ [XIV Intern. Specialized Exhibition “Weapons and security 2017ˮ]. Official catalog. 1 CD-ROM

Intern. Exhibition Center (2018), “XV Mizhnarodna spetsializovana vystavka «Zbroia ta bezpeka 2018»ˮ [XV Intern. Specialized Exhibition “Weapons and security 2018ˮ], Official catalog. 1 CD-ROM

Intern. Exhibition Center (2019), “XVІ Mizhnarodna spetsializovana vystavka «Zbroia ta bezpeka 2018»ˮ [XVІ Intern. Specialized Exhibition “Weapons and security 2019ˮ], Official catalog. 1 CD-ROM

Indenbom, M. (2015), “Antennye reshetky podvyzhnykh obzornykh RLS. Teoryia, raschet, konstruktsiiˮ [Antenna arrays of mobile surveillance radars. Theory, calculation, designs], Radiotechnics, M. 416 р.

Remezov, A. (2012), “Fazyrovannye antennye reshetky v radyolokatsyonnykh stantsyiakh radyotekhnycheskykh voisk” [Phased antenna arrays in radar stations of radio technical troops], Aerospace defense. No. 06. Available at: http://www.vko.ru. (accessed 06 May 2021).

Tanyhyn, N. & Hahauz, V. (2010), “Pervaia v myre mobylnaia RLS metrovoho dyapazonaˮ [The world’s first mobile VHF radar], Aerospace defense. No. 04. Available at: http://www.vko.ru. (accessed 05 May 2021).

Riabov, K. (2014), “Radyolokatsyonnaia Stantsyia 55Zh6UM (Nyobyi)” [Radar station 55Zh6UM (“Niobium”)], Military review for 16.01.2014. Available at: http://topwar.ru. (accessed 12 May 2021).

Petrov, V. & Hryshulyn, S. (2010), “Nazemnye radyolokatsyonnye stantsyy PVO–PRO na TVD stran NATOˮ [Ground-based air defense-missile defense radars in the theater of operations of NATO countries], Foreign military review. No. 08. Pp. 63—68.

AN/TPS-80 Ground/Air Task-Oriented Radar (G/ATOR). Available at: https://www.northropgrumman.com/what-we-do/land/an-tps-80-ground-air-task-oriented-radar-g-ator (accessed 12 May 2021).

Korenkov, V. (2014), “Novye lokatory osvaivaiut Arktiku ˮ [New locators are exploring the Arctic], Aerospace defense. No. 02. Available at: http://www.vko.ru. (accessed 11 May 2021).

Rybakov, A.N. (2000), “Otkrytye kompiuternye COTS-tekhnolohyy v voennykh prylozhenyiakhˮ [Open computer COTS technologies in military applications], Open systems. M. No. 04. Pp. 46—53.

Sylkyn, A.T. & Brener, B.A. (2002), “PVO Severo-Amerykanskoho kontynenta sehodnia i zavtraˮ [Air defense of the North American continent: today and tomorrow], Aerospace defense. No. 03, 04. Available at: http://www.vko.ru. (accessed 11 May 2021).

Cover Image
Published
2022-02-01
Section
RADIO-TECHNICAL FACILITIES
License
Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 International License.

How to Cite

Analysis of trends and forecasts of development of military radar for air target detection for the medium-term. (2022). Weapons and Military Equipment, 31(3), 34-43. https://doi.org/10.34169/2414-0651.2021.3(31).34-43

Most read articles by the same author(s)

1 2 > >>