• Українська
  • English
  • Русский
ISSN 2415-3400 (Online)
ISSN 1028-821X (Print)

BISTATIC RADAR SYSTEM USING RADIO SIGNALS OF GEOSTATIONARY SATELLITE LOW NOISE BLOCKS

Mytsenko, IM, Khalameyda, DD
Organization: 

O. Ya. Usikov Institute for Radiophysics and Electronics of the National Academy of Sciences of Ukraine
12, Proskura st., Kharkov, 61085, Ukraine

E-mail: khalameyda@ire.kharkov.ua

https://doi.org/10.15407/rej2017.02.023
Language: Russian
Abstract: 

The bistatic radar system using radio signals of geostationary satellites is considered. The system allows detecting hydrometeors and turbulent movements in the troposphere. The description of the receiving measuring complex and the results of experimental observations during various meteorological conditions and wind speeds are shown. Applying a multi-position bistatic system using radio signals of geostationary satellites and reception points installed at different points of the serviced territories was proposed to determine hydrometeors parameters and to predict atmospheric hazardous phenomena over large areas.

Keywords: bistatic radar, satellite low noise block

Manuscript submitted 27.02.2017
PACS 93.85.Pq
Radiofiz. elektron. 2017, 22(2): 23-27
Full text (PDF)

References: 
  1. SHIRMAN, Ja. D., ed., 1970. Theoretical bases of radar. Mosсow: Sovetskoe radio Publ. (in Russian).
  2. BLYAKHMAN, A. B., 1998. Forward Scattering Bistatic Radar. In: Proceedings of PIERS Workshop on Advances in Radar Methods. Baveno, Italy, July 20–22 1998. P. 107–113.
  3. KOVALEV, A. M., KOVALEV, F. N., 2013. Formulas for calculating the parameters of the target trajectory in luminous bistatic radars. Vestnik Saratovskogo Gosudarstvennogo Tehnicheskogo Universiteta (Vestnik SGTU). Saratov. Vol. 4(73), pp. 35–37 (in Russian).
  4. BAKULEV, P. А., STEPIN, V. M., 1986. Methods and devices for selection of moving targets. Moscow: Radio i svyaz Publ. (in Russian).
  5. BLYAHMAN, А. B., KOVALEV, F. N., RYNDIK, A. G., 2001. Bistatic scattering cross-section and detection of objects during radar “on clearance”. Radiotehnica. No. 1, p. 4 (in Russian).
  6. BLYAHMAN, А. B., RYNDIK, A. G., KOVALEV, F. N. Device for determining the parameters of the movement of the target. Russian Federation. Pat. No. 2124220 (in Russian).
  7. BAKULEV, P. A., 1964. Radiolocation of moving targets. Moskov: Sovetskoe radio Publ. (in Russian).
  8. BLYAHMAN, A. B., MAKINKOV, A. V., RYNDIK, A. G., 2004. Space-time processing of signals in a bistatic clearing radar system with an antenna array. Radiotehnika i elektronika. Vol. 49, no. 6, pp. 707–712 (in Russian).
  9. MYTSENKO, I. M., KHOMENKO, S. I., 2005. An Ecologically Clean Over-the-Horizon Radar for Protection of Territorial Sea Waters. Telecommunications and Radio Engineering. Vol. 63, no. 8, pp. 689–698. DOI: https://doi.org/10.1615/TelecomRadEng.v63.i8.30
  10. LUTSENKO, I. V., POPOV, I. V., LUTSENKO, V. I., 2007. Bistatic radar with illumination of ionospheric signals of communication stations of short-wave range. Radiofizika i  elektronika. Vol. 12, no. 1, pp. 199–204 (in Russian).
  11. MYTSENKO, I. M., KHALAMEYDA, D. D., KHOMENKO, S. I., 2008. Use of Geostationary Satellite Radio Signals for Determining of Hydrometeor Parameters. Telecommunications and Radio Engineering. Vol. 67, Iss. 1, pp. 87–95. DOI: https://doi.org/10.1615/TelecomRadEng.v67.i1.80
  12. KOVALEV, F. N., 2007. Determination of the coordinates of moving targets from measurements of the Doppler frequency in radar systems with detection of “on clearance”. Radiotehnika i elektronika. Vol. 52, no. 3, pp. 331–339 (in Russian).
  13. MYTSENKO, I. M., KHALAMEYDA, D. D., 2010. Multiposition Bistatic Radar System Using Radio Signals of Geostationary Satellites for Hydrometeors Parameters Determination. In: Proceedings of the Seventh European Radar Confe-rence (EuRAD 2010), Paris, France, 30 Sept.1 Oct. 2010.