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电信和无线电工程
SJR: 0.202 SNIP: 0.2 CiteScore™: 0.23

ISSN 打印: 0040-2508
ISSN 在线: 1943-6009

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电信和无线电工程

DOI: 10.1615/TelecomRadEng.v70.i18.60
pages 1673-1683

AUTODYNE MILLIMETER BAND SURVEILLANCE RADAR

G. P. Yermak
A. Usikov Institute of Radio Physics and Electronics, National Academy of Sciences of Ukraine, 12, Academician Proskura St., Kharkov 61085
A. V. Varavin
A. Usikov Institute of Radio Physics and Electronics, National Academy of Sciences of Ukraine, 12, Academician Proskura St., Kharkov 61085
A. S. Vasiliev
A.Ya. Usikov Institute of Radio Physics and Electronics, National Academy of Sciences of Ukraine, 12, Academician Proskura St., Kharkiv 61085
I. V. Popov
A. Usikov Institute of Radio Physics and Electronics, National Academy of Sciences of Ukraine, 12, Academician Proskura St., Kharkov 61085
A. P. Yevdokymov
O.Ya. Usikov Institute for Radio Physics and Electronics, National Academy of Sciences of Ukraine, 12 Academician Proskura St., Kharkiv 61085, Ukraine
V. V. Kryzhanovsky
A. Usikov Institute of Radio Physics and Electronics, National Academy of Sciences of Ukraine 12, Academician Proskura St., Kharkov 61085, Ukraine

ABSTRACT

This paper presents the research results of low-range surveillance radar designed on the basis of Ka-band FMCW autodyne transceiver with scanning antenna of diffraction radiation. All the functions of signal forming and spectral processing, as well as control over the scanning beam of the antenna were carried out by means of a digital signal processor. The control commands and signals from radar were transmitted through the radio channel IEEE 802.11b.

REFERENCES

  1. Komarov, I.V. and Smolskiy, S.M., Basis of theory of FMCW radar systems.

  2. Zakarlyuk, N.M., Autodyne response spectrum of a FM oscillator, in: Application of millimeter and submillimeter radio waves: Collection of scientific papers.

  3. Votoropin, S.D., Noskov, V.Ya., and Smolskiy, S.M., Contemporary hybrid-integral autodyne oscillators of microwave and millimeter wave bands and their application. Part 5. Research of autodynes with frequency modulation.

  4. Varavin, A.V., Vasiliev, A.S., Yermak, G.P., and Popov, I.V., Autodyne Gunn diode transceiver with internal signal detection for short-range linear FM radar sensor.

  5. Varavin, A.V., Vasiliev, A.S., Yermak, G.P., and Popov, I.V., Proc. of 18th International Crimean Conference on Microwaves and Telecommunication Technology.

  6. Sergienko, A.B., Digital signal processing.

  7. Yevdokimov, A.P. and Kryzhanovskiy, V.V., New trend in the antenna array engineering.

  8. Yermak, G.P., Varavin, A.V., Vasiliev, A.S. et al., Surveillance autodyne radar of millimeter wave band, Proc. of 19th International Crimean Conference on Microwaves and Telecommunication Technology.


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