DocumentCode
2784549
Title
The SlimSAR: A small, multi-frequency, Synthetic Aperture Radar for UAS operation
Author
Zaugg, Evan ; Edwards, Matthew ; Margulis, Arie
Author_Institution
ARTEMIS, Inc., Hauppauge, NY, USA
fYear
2010
fDate
10-14 May 2010
Firstpage
277
Lastpage
282
Abstract
The SlimSAR is a small, low-cost, Synthetic Aperture Radar (SAR) and represents a new advancement in highperformance SAR. ARTEMIS employed a unique design methodology that exploits previous developments in designing the Slim-SAR to be smaller, lighter, and more flexible while consuming less power than typical SAR systems. With an L-band core, and frequency block converters, the system is very suitable for use on a number of small UAS´s. Both linear-frequency-modulated continuous-wave (LFM-CW), which achieves high signal-to-noise ratio while transmitting with less power, and pulsed mode have been tested. The flexible control software allows us to change the radar parameters in flight. The system has a built-in high quality GPS/IMU motion measurement solution and can also be packaged with a small data link and a gimbal for high frequency antennas. Multi-frequency SAR provides day and night imaging through smoke, dust, rain, and clouds with the advantages of additional capabilites at different frequencies (i.e. dry ground and foliage penetration at low frequencies, and change detection at high frequencies.)
Keywords
FM radar; radar computing; remotely operated vehicles; synthetic aperture radar; GPS-IMU motion measurement solution; Multi-Frequency, Synthetic Aperture Radar; SAR imaging; SlimSAR:; UAS operation; flexible control software; frequency block converters; linear-frequency-modulated continuous-wave system; signal-to-noise ratio; Design methodology; Frequency conversion; Global Positioning System; L-band; Motion measurement; Radar antennas; Radar imaging; Signal to noise ratio; Synthetic aperture radar; Testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Radar Conference, 2010 IEEE
Conference_Location
Washington, DC
ISSN
1097-5659
Print_ISBN
978-1-4244-5811-0
Type
conf
DOI
10.1109/RADAR.2010.5494612
Filename
5494612
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