DocumentCode
2014636
Title
Hardware efficient digital channeliser designs for radar intercept applications
Author
Li, Jie ; Elton, Stephen D. ; Herfurth, Simon P. ; Ly, Peter Q. C.
Author_Institution
Electron. Warfare & Radar Div., Defence Sci. & Technol. Organ., Edinburgh, SA, Australia
fYear
2013
fDate
9-12 Sept. 2013
Firstpage
488
Lastpage
493
Abstract
Radio frequency (RF) signal intercept systems, such as electronic support (ES) receivers, are inherently wideband by design to provide spectral surveillance over a wide frequency range. To meet both sensitivity and frequency coverage requirements, a digital channelised receiver architecture, such as that proposed in [1], is very attractive. An improved channeliser-synthesiser architecture, which provides continuous coverage of the receiver bandwidth, has also been proposed in [5] and we provide details of a design used by DSTO in its on-going development of an experimental ES Testbed. Despite their advantages, both of these receiver architectures have a fixed channel bandwidth that cannot provide optimal bandwidth reduction for the detection and processing of a diverse set of signals, such as that encountered in radar intercept applications. In this paper, a hardware efficient, cascaded channeliser architecture is proposed which allows a wideband radar intercept receiver to dynamically customise its channel bandwidth to the bandwidth of an intercepted signal in real-time.
Keywords
radar receivers; radar signal processing; cascaded channeliser architecture; channeliser-synthesiser architecture; electronic support receivers; fixed channel bandwidth; hardware efficient digital channeliser designs; on-going development; radar intercept applications; radio frequency signal intercept systems; spectral surveillance; wide frequency range; wideband radar intercept receiver; Bandwidth; Chirp; Computer architecture; Filter banks; Finite impulse response filters; Receivers; Synthesizers; channeliser; uniform filter bank; wideband receiver architecture;
fLanguage
English
Publisher
ieee
Conference_Titel
Radar (Radar), 2013 International Conference on
Conference_Location
Adelaide, SA
Print_ISBN
978-1-4673-5177-5
Type
conf
DOI
10.1109/RADAR.2013.6652037
Filename
6652037
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