DocumentCode
1937282
Title
Advances in digital calibration techniques enabling real-time beamforming SweepSAR architectures
Author
Hoffman, J.P. ; Perkovic, D. ; Ghaemi, Hirad ; Horst, S. ; Shaffer, Scott ; Veilleux, L.
Author_Institution
Jet Propulsion Lab., California Inst. of Technol., Pasadena, CA, USA
fYear
2013
fDate
2-9 March 2013
Firstpage
1
Lastpage
9
Abstract
Real-time digital beamforming, combined with lightweight, large aperture reflectors, enable SweepSAR architectures, which promise significant increases in instrument capability for solid earth and biomass remote sensing. These new instrument concepts require new methods for calibrating the multiple channels, which are combined on-board, in real-time. The benefit of this effort is that it enables a new class of lightweight radar architecture, Digital Beamforming with SweepSAR, providing significantly larger swath coverage than conventional SAR architectures for reduced mass and cost. This paper will review the on-going development of the digital calibration architecture for digital beamforming radar instrument, such as the proposed Earth Radar Mission´s DESDynI (Deformation, Ecosystem Structure, and Dynamics of Ice) instrument. This proposed instrument´s baseline design employs SweepSAR digital beamforming and requires digital calibration. We will review the overall concepts and status of the system architecture, algorithm development, and the digital calibration testbed currently being developed. We will present results from a preliminary hardware demonstration. We will also discuss the challenges and opportunities specific to this novel architecture.
Keywords
calibration; remote sensing by radar; synthetic aperture radar; Earth radar mission DESDynI; biomass remote sensing; cost reduction; digital beamforming radar instrument; digital calibration techniques; large aperture reflectors; lightweight radar architecture; mass reduction; real-time beamforming SweepSAR architecture; solid earth; Array signal processing; Calibration; Digital filters; Instruments; Real-time systems; Receivers; Transmitters;
fLanguage
English
Publisher
ieee
Conference_Titel
Aerospace Conference, 2013 IEEE
Conference_Location
Big Sky, MT
ISSN
1095-323X
Print_ISBN
978-1-4673-1812-9
Type
conf
DOI
10.1109/AERO.2013.6497146
Filename
6497146
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