DocumentCode
1149634
Title
Switching system for single antenna operation of an S-band FMCW radar
Author
McGregor, J.A. ; Poulter, E.M. ; Smith, M.J.
Author_Institution
Nat. Inst. of Water & Atmos. Res. Ltd., Lower Hutt, New Zealand
Volume
141
Issue
4
fYear
1994
fDate
8/1/1994 12:00:00 AM
Firstpage
241
Lastpage
248
Abstract
Increasing interest is being shown in frequency modulated continuous wave (FMCW) radars due to their advantages of compact size, low peak power requirement, good range resolution and low interference to other systems. A major disadvantage of FMCW systems is the need to use two separate, well shielded antennas for transmission and reception. Several schemes have been devised to enable FMCW radars to operate with a single antenna. The authors describe a ground based S-band ocean surface remote sensing FMCW radar that has been adapted for single antenna operation by alternately switching the single antenna between the transmitter and the receiver. Even though this frequency modulated interrupted continuous wave (FMICW) system is no longer a true continuous wave radar, the essential properties of the FMCW waveform are preserved, provided some conditions on the switching speed and FMCW parameters are met. The purpose of the radar is to deduce ocean wave and current parameters by measuring ocean surface velocities. The radar was tested operationally by comparing ocean surface data from both the single antenna (FMICW) and dual antenna (FMCW) systems recorded under similar conditions
Keywords
frequency modulation; ocean waves; oceanographic equipment; radar antennas; remote sensing by radar; switching systems; 1 W; 160 m to 2 km; 29 dB; 3 GHz; 32 dB; 7.5 to 60 MHz; FMCW parameters; FMCW waveform; S-band FMCW radar; frequency modulated continuous wave; low interference; low peak power; ocean current parameters; ocean surface data; ocean surface remote sensing; ocean surface velocities; ocean wave parameters; range resolution; reception; shielded antennas; single antenna operation; switching speed; switching system; transmission;
fLanguage
English
Journal_Title
Radar, Sonar and Navigation, IEE Proceedings -
Publisher
iet
ISSN
1350-2395
Type
jour
DOI
10.1049/ip-rsn:19941231
Filename
311842
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