350 rub
Journal Electromagnetic Waves and Electronic Systems №2 for 2023 г.
Article in number:
Calculation and analytical assessment of the influence of the noise temperature of the receiving path on the energy potential of a long-range radar station
Type of article: scientific article
DOI: https://doi.org/10.18127/j5604128-202302-05
UDC: 623.618.5
Authors:

A.V. Pilkov1, A.U. Perlov2, D.I. Bukhanets3, T.D. Treryakova4

1−4JSC "Radiotechnical Institute named after academician A.L. Mints" (Moscow, Russia)

Abstract:

The energy potential of an early warning radar station is one of the important technical characteristics of the station, which makes it relevant to assess the contribution of characteristics that affect its calculation. The aim of article – to carrying out a calculated assessment of the relationship between noise temperature and energy potential to establish its dependence on the energy potential.

An analysis was made of the relationship between noise temperature and the energy potential of an early warning radar. For each functional unit of the early warning radar, specific electromagnetic compatibility parameters are defined that can affect the energy potential. The dependences of the potential on the noise temperature of an early warning radar are obtained. The results of simulation modeling demonstrate the ability to substantiate the main radio engineering parameters for the components of the receiving path of an early warning radar.

Pages: 36-42
References
  1. Kharlov N.N. Elektromagnitnaya sovmestimost v elektroenergetike. Tomsk: Izd-vo Tomskogo politekhnicheskogo universiteta. 2008. 200 s. (in Russian)
  2. Upravlenie radiochastotnym spektrom i elektromagnitnaya sovmestimost radiosistem: Ucheb. posobie. Pod red. M.A. Bykhovskogo. M.: Eko-Trendz. 2006. 376 s. (in Russian)
  3. Gorelik A.G., Kolomiets S.F., Krivoruchko V.I., Kupriyanov P.V., Petrov S.A. Energeticheskii potentsial tverdotelnykh radiolokatsionnykh SVCh-priemoperedatchikov nepreryvnogo rezhima. Nauchnyi vestnik MGTU GA. 2015. 222. S. 72−79. (in Russian)
  4. Krat A.Kh., Pilkov A.V. Praktika obespecheniya elektromagnitnoi sovmestimosti radioelektronnogo sredstva na vsem zhiznennom tsikle ego sozdaniya i posleduyushchei ekspluatatsii. Tekhnologii elektromagnitnoi sovmestimosti. 2018. № 2 (65). S. 79−87. (in Russian)
  5. Maslov O.N., Ryabushkin A.V., Maslov S.A., Frolova M.A. Elektromagnitnaya bezopasnost: ot pasportizatsii ob'ektov k analizu sostoyaniya territorii. Elektromagnitnye volny i elektronnye sistemy. 2021. T. 26. № 2. S. 5−16. DOI: https://doi.org/10.18127/j15604128-202102-01. (in Russian)
  6. Berdyshev V.P., Garin E.N., Fomin A.N. i dr. Radiolokatsionnye sistemy: Uchebnik. Pod obshch. red. V.P. Berdysheva. Krasnoyarsk: Sibirskii federalnyi un‑t. 2011. 400 s. (in Russian)
  7. GOST RV 52226-2004 Ustroistva radioperedayushchie. Trebovaniya k osnovnym parametram vnepolosnykh i pobochnykh radioizluchenii (2004). Gosudarstvennyi komitet RF po standartizatsii i metrologii. M.: Izd-vo standartov. 2004. III. 24 s. (in Russian)
  8. Tyapkin V.N., Fomin A.N., Garin E.N. i dr. Osnovy postroeniya radiolokatsionnykh stantsii radiotekhnicheskikh voisk: Uchebnik.  Pod obshch. red. V.N. Tyapkina. Krasnoyarsk: Sibirskii federalnyi un‑t. 2011. 536 s. (in Russian)
  9. Astasheva N.P., Zhidkova E.A., Shumskaya L.P. i dr. Upravlenie kachestvom tekhnologicheskikh protsessov. M.: OOO "Nauchnyi konsultant". 2015. 149 s. (in Russian)
  10. Efanov V.I., Tikhomirov A.A. Elektromagnitnaya sovmestimost radioelektronnykh sredstv i sistem: Ucheb. posobie. Tomsk: Tomskii gosudarstvennyi universitet sistem upravleniya i radioelektroniki. 2012. 228 s. (in Russian)
  11. Kovrigin V.A. Modifikatsiya uravnenii dalnosti sistem blizhnei lokatsii. Nauchnyi vestnik MGTU GA. 2008. № 133. (in Russian)
  12. Logovskii A.S., Maltsev G.N., Rakhmanov A.A., Timoshenko A.V. Tekhniko-ekonomicheskii pokazatel effektivnosti sozdaniya radiolokatsionnykh sistem dalnego obnaruzheniya. Vooruzhenie i ekonomika. 2020. № 2(52). S. 9−23. (in Russian)
  13. Uait D.R. Elektromagnitnaya sovmestimost radioelektronnykh sredstv i neprednamerennye pomekhi. 1997. T. 1. S. 92. (in Russian)
Date of receipt: 24.02.2023
Approved after review: 10.03.2023
Accepted for publication: 20.03.2023