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Published in: Measurement Techniques 11/2018

02-03-2018

Assessment of Range and Radial Velocity of Objects of a Broadband Radar Station Under Conditions of Range Cell Migration

Authors: L. B. Ryazantsev, V. P. Likhachev

Published in: Measurement Techniques | Issue 11/2018

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Abstract

A method is proposed that makes it possible to increase the period of coherent accumulation of signals reflected from objects, in order to increase the operating range of a radar station with linear frequencymodulated continuous wave under conditions of range cell migration. The range and radial velocity of an object are calculated with the condition that the change in distance to it during the modulation significantly exceeds the resolution of the radar station at that range. An assessment of the potential accuracy of the estimates is conducted, and results of experimental verification of the proposed method are presented.

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Literature
1.
go back to reference J. Drozdowicz, “35 GHz FMCW drone detection system,” 17th Int. Radar Symp., Krakow (2016). J. Drozdowicz, “35 GHz FMCW drone detection system,” 17th Int. Radar Symp., Krakow (2016).
2.
go back to reference S. A. Sysoyev, “Smart vehicular systems and sensors,” Kompon. Tekhnol., No. 1, 7–18 (2012). S. A. Sysoyev, “Smart vehicular systems and sensors,” Kompon. Tekhnol., No. 1, 7–18 (2012).
3.
go back to reference Ya. D. Shirman, Theoretical Foundations of Radar Location, Sov. Radio, Moscow (1970). Ya. D. Shirman, Theoretical Foundations of Radar Location, Sov. Radio, Moscow (1970).
4.
go back to reference M. Meinecke and H. Rohling, “Combination of LFMCW and FSK modulation principles for automotive radar systems,” Proc. Ger. Radar Symp. GRS200, Berlin (2000). M. Meinecke and H. Rohling, “Combination of LFMCW and FSK modulation principles for automotive radar systems,” Proc. Ger. Radar Symp. GRS200, Berlin (2000).
5.
go back to reference L. A. Shkol’nyi, Air Reconnaissance BRS and Decoding Radar-Tracking Images, VVIA im. Zhukovskogo, Moscow (2008). L. A. Shkol’nyi, Air Reconnaissance BRS and Decoding Radar-Tracking Images, VVIA im. Zhukovskogo, Moscow (2008).
6.
go back to reference V. N. Antipov, E. E. Koltyshev, V. V. Mukhin, A. V. Pechennikov, et al., “Radar-tracking system of an unmanned aerial vehicle,” Radiotekhnika, No. 7, 14–20 (2006). V. N. Antipov, E. E. Koltyshev, V. V. Mukhin, A. V. Pechennikov, et al., “Radar-tracking system of an unmanned aerial vehicle,” Radiotekhnika, No. 7, 14–20 (2006).
7.
go back to reference Yu. P. Grishin, V. P. Ipatov, and Yu. M. Kazarinov (ed.), Radio Engineering Systems, Vysshaya Shkola, Moscow (1992). Yu. P. Grishin, V. P. Ipatov, and Yu. M. Kazarinov (ed.), Radio Engineering Systems, Vysshaya Shkola, Moscow (1992).
8.
go back to reference I. F. Kupryashkin and V. P. Likhachev, Space-Based Radar Mapping of the Earth’s Surface under Noise Conditions: Monograph, Nauchnaya Kniga, Voronezh (2014). I. F. Kupryashkin and V. P. Likhachev, Space-Based Radar Mapping of the Earth’s Surface under Noise Conditions: Monograph, Nauchnaya Kniga, Voronezh (2014).
9.
go back to reference A. V. Bogomolov, I. F. Kupryashkin, V. P. Likhachev, and L. B. Ryazantsev, “Small-sized dual-band RSA for a pilotless aviation system,” Proc. 29th All-Russ. Symp. Radar-Tracking Research of Natural Environments, VKA im. Mozhaiskogo, St. Petersburg, Russia (2015), Iss. 11, pp. 235–240. A. V. Bogomolov, I. F. Kupryashkin, V. P. Likhachev, and L. B. Ryazantsev, “Small-sized dual-band RSA for a pilotless aviation system,” Proc. 29th All-Russ. Symp. Radar-Tracking Research of Natural Environments, VKA im. Mozhaiskogo, St. Petersburg, Russia (2015), Iss. 11, pp. 235–240.
Metadata
Title
Assessment of Range and Radial Velocity of Objects of a Broadband Radar Station Under Conditions of Range Cell Migration
Authors
L. B. Ryazantsev
V. P. Likhachev
Publication date
02-03-2018
Publisher
Springer US
Published in
Measurement Techniques / Issue 11/2018
Print ISSN: 0543-1972
Electronic ISSN: 1573-8906
DOI
https://doi.org/10.1007/s11018-018-1334-4

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