DocumentCode
2887767
Title
Wideband phased array radar with digital adaptive beamforming
Author
Tarran, Chris ; Mitchell, Mark ; Howard, Robert
Author_Institution
Roke Manor Res. Ltd., Romsey, UK
fYear
1999
fDate
1999
Firstpage
42370
Lastpage
42376
Abstract
Future defence radar systems, and in particular the ballistic missile defence (BMD) application, demand radar with high resolution in both angle and range. The high resolution angle estimation requires a large antenna aperture of many wavelengths. The high range resolution requires a wideband waveform of several hundreds of MHz. This paper considers architectures and waveforms for wideband phased array radar and in particular the application of advanced digital adaptive beamforming. A typical wideband waveform used in this class of radar is linear frequency modulation (LFM). It is shown that this waveform is particularly well suited to digital adaptive beamforming. The large electrical aperture demands the use of time delay units for beamsteering, at least at subarray level. A new approach for digitally synthesising the time delay steering is presented. The importance of employing irregular (randomised) subarraying for time delay steering is presented to avoid the problem of wideband grating lobes. This is also a requirement of adaptive beamforming. Finally, an architecture for wideband digital adaptive beamforming which fits well with the use of LFM waveforms is presented
Keywords
phased array radar; LFM waveforms; advanced digital adaptive beamforming; antenna aperture; ballistic missile defence; beamsteering; digital adaptive beamforming; future defence radar systems; high resolution angle estimation; linear frequency modulation; subarray level; time delay steering; time delay units; wideband grating lobes; wideband phased array radar; wideband waveform;
fLanguage
English
Publisher
iet
Conference_Titel
High Resolution Radar and Sonar (Ref. No. 1999/051), IEE Colloquium
Conference_Location
London
Type
conf
DOI
10.1049/ic:19990263
Filename
772147
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