Variant of realization the method of transferring information on the airial environment from the board of a airborne writings and control system sigint to an post
- Authors
-
-
- Keywords:
- Array, Array, Array, Array, Array, Array
- Abstract
-
The idea of a method of transferring information about the SIGINT from the automated workplace of the operator of an enemy AWACS to SIGINT post is described. It is shown that the elliptical direction finding method of determining coordinates is used to implement the method. A structural diagram of a signal intelligence (SIGINT) post is proposed, on the basis of which the method is implemented. The radio reconnaissance post includes two antenna systems that create fan-type directional diagrams; two channels for receiving direct signals; one channel for receiving reflected signals; a signal processing device and a virtual all-round indicator (monitor of an automated workplace). The main tactical and technical requirements for a radio reconnaissance post, which is intended for the implementation of the specified method, are formulated. The main technical solutions for antenna systems for the radio reconnaissance post have been substantiated. Radio reconnaissance zones of the airborne radar of the AWACS aircraft have been constructed, while the SIGINT zone for channel 1 of receiving direct radar signals on the side lobes of the radar corresponds to a sensitivity of –100 dB, and the SIGINT zone for channel 2 of receiving direct radar signals on the main lobe of the radar corresponds to a sensitivity of –61.5 dB. The type of direction finding characteristic of the antenna system with two horns is given. Radio reconnaissance zones have been constructed for the situation of receiving direct and reflected signals of the airborne radar of the AWACS aircraft. The technical characteristics of the antenna system of channel 3 of receiving reflected signals are substantiated.
- Author Biographies
- References
-
Смирнов Ю.А. Радиотехническая разведка. М.: Воениздат. 2001.
Чепков, І. Б., & Нор, П. І. (2014). Загальні тенденції розвитку озброєння та військової техніки. Озброєння та військова техніка, 1(1), 4–13.
https://doi.org/10.34169/2414-0651.2014.1(1).4-13
Степшин М.П., Аниконов А.Н. Развитие вооружения, военной и специальной техники и их влияние на характер будущих войн. Военная мысль. 2021. № 12. С. 35—43.
Селиванов В.В., Ильин Ю.Д. Тенденции развития средств вооруженной борьбы в современных военных конфликтах, их влияние на развитие и смену поколений вооружения, военной и специальной техники. Военная мысль. 2022. № 9. С. 29—44.
Каталог «Оружие России». М.: Студия Этника. 2018. 688 с.
Вооружение Воздушно-космических Сил России. Т. 1. Современная техника ВКО и РЭБ России. М.: Студия Этника. 2016. 560 с.
McDermott R.N. Russia’s Electronic Warfare Capabilities to 2025: Challenging NATO in Electromagnetic Spectrum. Tech. Report. Intern. Centre for Defence and Security. Tallin. 2017. 48 p.
Максименков А.М. Современные наземные средства радиотехнической разведки иностранных государств. Зарубежное военное обозрение. 2013. № 6. 2013. С. 51—57.
Білобородова Л.В., Зібін С.Д., Чернега В.А. Деякі питання аналізу сучасного стану розвитку комплексів радіотехнічної розвідки. Зб. наук. пр. Київ: ЦНДІ ОВТ ЗСУ. 2024. № 3(94). С. 116—125.
Анализ современного состояния развития средств и комплексов радио-, радиотехнического контроля / Конотопец Н.Н., Попов А.А., Зибин С.Д., Смольков А.Ю. Сучасні інформаційні технології у сфері безпеки та оборони. 2017. № 3(30). С. 32—39.
Оцінювання тактико-технічних характеристик комплексів (станцій) радіорозвідки Збройних Сил України та передових країн світу / Пятак М.В., Трунін І.В., Семенок В.О., Стариш М.Є. Пятак Д.В. Зб. наук. пр. Київ: Центр воєнно-стратегічних досліджень Нац. ун-ту оборони України. 2021. № 3(73). С. 123—128.
Куприянов А.И., Петренко П.Б., Сычев М.П. Теоретические основы радиоэлектронной разведки. М.: МГТУ. 2010.
Радзиевский В.Г., Сирота А.А. Теоретические основы радиоэлектронной разведки. М.: Радиотехника. 2004.
Терентьев А.В., Коротков В.Ф. Радиотехническая разведка: Теория и практика обработки радиолокационных сигналов. СПб.: Медиапапир. 2021.
Wiley, R.G. (2006). ELINT: The Interception and Analysis of Radar Signals. Artech House. 468 p.
Poisel, R.A. (2014). Electronic Warfare Receivers and Receiving Systems. Artech House. 832 p.
Poisel, R.A. (2012). Antenna Systems and Electronic Warfare Applications. Artech House.
Poisel, R.A. (2019). RF Electronics for Electronic Warfare. Artech House. 600 p.
Antenna Engineering Handbook. R.C. Johnson – Editor. McGraw Hill. 1993. 1512 p.
Balanis C.A. et al. (2008). Modern Antenna Handbook. (Balanis C.A. – Ed.). Wiley.
Huang, Y. & Boyle, K. (2008). Antennas: from Theory to Practice. Wiley.
Gibson, P.J. (1979). The Vivaldi Aerial. 9th European Microwave Conf. Brighton, UK. Pp. 101—105.
Pan, Y., Cheng, Y. & Dong, Y. (2021). Dual-polarized directive ultra-wideband antenna integrated with horn and Vivaldi array. IEEE Antennas and Wireless Propogation Letters. Vol. 20, 1. Pp. 48—52.
Monzingo, R.A, Miller, T.W. & Haupt, R.L. (2011). Introduction to Adaptive Arrays. SciTech Publishing. Inc. 686 p.
Digital Signal Processing Handbook. Ed. by V.K. Madisetti, D.B. Williams. CRC Press. 1999. 1690 p.
Korn, G.A. & Korn, T.M. (1968). Mathematical Handbook for Scientists and Engineers. Mcgraw-hill Book Company.
- Downloads
- Published
- 2025-09-30
- Section
- RADIO-TECHNICAL FACILITIES
- License
-
Copyright (c) 2026 Сергій Зібін,Андрій Попов

This work is licensed under a Creative Commons Attribution 4.0 International License.
How to Cite
Most read articles by the same author(s)
- Sergey Zibin , Andrey Popov, Volodimir Tverdochlibov , Lubov Biloborodova , EXPLOITING SIMULATION OF ELECTRONIC COUNTER MEASURES AGAINST INFORMATION TRANSMITTING SYSTEMS FOR ESTIMATING THEIR ENERGETIC EFFICIENCY , Weapons and military equipment: Vol. 34 No. 2 (2022): Weapons and military equipment
- Lubov Biloborodova, Sergey Zibin , Andrey Popov, Vladimir Tverdochlebov, MODEL OF ELECTRONIC WARFARE AGAINST GROUND-BASED INFORMATION TRANSMITTING SYSTEMS OPERATING UNDER JAMMING CONDITIONS CREATED BY EW UAV , Weapons and military equipment: Vol. 38 No. 2 (2023): Weapons and military equipment
- Lubov Biloborodova , Sergey Zibin , Andrey Popov , Vladimir Tverdochlebov , Modeling electronic counter measures against board electronic systems of anti-ship missile , Weapons and military equipment: Vol. 37 No. 1 (2023): Weapons and military equipment
- Andrey Krutykh , Andrey Popov, Vladimir Tverdochlebov , Vladylen Chernega, COMPARATIVE ANALYSIS OF EFFICIENCY OF TWO SIGNAL PROCESSING ALGORITHMS IN ANTENNA ARRAYS AMID NON-GAUSSIAN INTERFERENCE CONDITIONS , Weapons and military equipment: Vol. 42 No. 2 (2024): Weapons and military equipment
- Володимир Маслов, Sergey Zibin, Andrey Popov, Volodimir Tverdochlibov, Modeling of electronic counter measures against fire control radar of air defense system , Weapons and military equipment: Vol. 31 No. 3 (2021): Weapons and military equipment
- Oleksii Nalapko, Andrey Popov, Vladimir Tverdohlebov, Andrey Shishatskiy, ESTIMATING EFFICIENCY OF TACTICAL TELECOMMUNICATION NETWORK OPERATING UNDER JAMMING CONDITIONS , Weapons and military equipment: Vol. 26 No. 2 (2020): Weapons and military equipment
- Sergey Zibin , Andrey Popov , Vladimir Tverdochlebov, SIMULATING ELECTRONIC COUNTER MEASURES AGAINST UGV , Weapons and military equipment: Vol. 35 No. 3 (2022): Weapons and military equipment
- Volodymyr Tverdokhlibov, Andrey Popov, Sergey Zibin, Lubov Biloborodova, Comparative analyzing the efficiency of four methods of spatial signal filtering amid jam conditions in radar system with planar antenna array , Weapons and military equipment: Vol. 50 No. 2 (2026): Weapons and Military Equipment
