DocumentCode
2443910
Title
An S-band digital array radar testbed
Author
Rabideau, Daniel J. ; Galejs, Robert J. ; Willwerth, Francis G. ; McQueen, David S.
Author_Institution
Lincoln Laboratory, MIT, Lexington, MA, USA
fYear
2003
fDate
14-17 Oct. 2003
Firstpage
113
Lastpage
118
Abstract
Future naval radars will perform a combination of functions including volume search, track, and high resolution imaging. These radars, which must operate in littoral regions (i.e., near coastlines), will need to contend with strong clutter and jamming. As such, digital phased array technology, wherein transmit and receive signals are digitized at (or near) the antenna element, can offer significant advantages. However, it appears that digitizing a large wideband microwave phased array has never before been attempted. Directly fielding such a system would come with some perceived risks; many of these risks can be mitigated through the development of a small scale testbed. Recently, MIT Lincoln Laboratory funded the development of a wideband digital array radar testbed. The system consists of a 14´ reconfigurable digital linear array aperture, 500+MHz imaging bandwidth, 90+dB dynamic range, and element-level digital recording. The initial system configuration uses direct digital waveform synthesis, analog signal distribution, and stretch processing at the receivers. Digital downconversion, time-delay beamsteering, and space-time adaptive processing (STAP) are performed by an offline processor. This paper provides an overview of the testbed´s design and construction. Initial test results are also presented.
Keywords
antenna phased arrays; array signal processing; linear antenna arrays; microwave antenna arrays; military radar; phased array radar; radar antennas; receiving antennas; space-time adaptive processing; S-band digital array radar testbed; analog signal distribution; antenna element; direct digital waveform synthesis; element-level digital recording; imaging bandwidth; littoral regions; naval radars; offline processor; receive signals; reconfigurable digital linear array aperture; space-time adaptive processing; time-delay beamsteering; transmit signals; wideband microwave phased array; Antenna arrays; High-resolution imaging; Jamming; Phased arrays; Radar antennas; Radar clutter; Radar imaging; Radar tracking; Receiving antennas; Testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Phased Array Systems and Technology, 2003. IEEE International Symposium on
Print_ISBN
0-7803-7827-X
Type
conf
DOI
10.1109/PAST.2003.1256966
Filename
1256966
Link To Document