DocumentCode
531784
Title
A high resolution 2D omnidirectional synthetic aperture radar scanner at K band
Author
Ali, Faiza ; Urban, Alexander ; Vossiek, Martin
Author_Institution
Inst. of Electr. Inf. Technol., Clausthal Univ. of Technol., Clausthal-Zellerfeld, Germany
fYear
2010
fDate
28-30 Sept. 2010
Firstpage
1694
Lastpage
1697
Abstract
In this paper a K-band 360° 2D imaging radar utilizing a synthetic aperture scanning principle is introduced. A small omnidirectional antenna is mounted on a rotating platform to create a circular synthetic aperture. Based on a broadband holographic reconstruction principle a high resolution 360° 2D image is calculated after each turn of the platform. The size of the synthetic aperture and thus the lateral resolution of the imaging system are determined by the diameter of the resulting circular antenna trajectory. In contrast to common radar scanner-concepts that utilize highly directional and thus bulky antennas, the proposed scanner concept has the advantage that it uses a small and lightweight omnidirectional antenna. This results in a much more compact radar system with notably relaxed requirements for the scanning mechanics. In addition it will be shown that the use of an omnidirectional antenna allows for very simple options to transfer energy to the radar on the rotation platform. The performance of the proposed SAR radar scanning method is illustrated with a 24 GHz FMCW radar sensor system.
Keywords
CW radar; FM radar; directive antennas; radar imaging; synthetic aperture radar; 2D imaging radar; 2D omnidirectional synthetic aperture radar scanner; FMCW radar sensor system; K band; SAR radar scanning method; broadband holographic reconstruction principle; circular antenna trajectory; circular synthetic aperture; omnidirectional antenna; rotating platform; synthetic aperture scanning principle; Aperture antennas; Image resolution; Radar antennas; Radar imaging; Synthetic aperture radar; FMCW radar; omni directional antenna; scanning; synthetic aperture;
fLanguage
English
Publisher
ieee
Conference_Titel
Microwave Conference (EuMC), 2010 European
Conference_Location
Paris
Print_ISBN
978-1-4244-7232-1
Type
conf
Filename
5617152
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