DocumentCode :
1937007
Title :
Coordinating complementary waveforms for sidelobe suppression
Author :
Dang, Wenbing ; Pezeshki, Ali ; Howard, Stephen ; Moran, William ; Calderbank, Robert
Author_Institution :
Colorado State Univ., Fort Collins, CO, USA
fYear :
2011
fDate :
6-9 Nov. 2011
Firstpage :
2096
Lastpage :
2100
Abstract :
We present a general method for constructing radar transmit pulse trains and receive filters for which the radar point-spread function in delay and Doppler, given by the cross-ambiguity function of the transmit pulse train and the pulse train used in the receive filter, is essentially free of range sidelobes inside a Doppler interval around the zero-Doppler axis. The transmit pulse train is constructed by coordinating the transmission of a pair of Golay complementary waveforms across time according to zeros and ones in a binary sequence P. The pulse train used to filter the received signal is constructed in a similar way, in terms of sequencing the Golay waveforms, but each waveform in the pulse train is weighted by an element from another sequence Q. We show that a spectrum jointly determined by P and Q sequences controls the size of the range sidelobes of the cross-ambiguity function and by properly choosing P and Q we can clear out the range sidelobes inside a Doppler interval around the zero-Doppler axis. The joint design of P and Q enables a tradeoff between the order of the spectral null for range sidelobe suppression and the signal-to-noise ratio at the receiver output. We establish this trade-off and derive a necessary and sufficient condition for the construction of P and Q sequences that produce a null of a desired order.
Keywords :
Doppler radar; binary sequences; filtering theory; optical transfer function; radar signal processing; spectral analysis; Doppler interval; Golay complementary waveforms; Golay waveforms; binary sequence; coordinating complementary waveforms; cross-ambiguity function; delay; necessary and sufficient condition; radar point-spread function; radar transmit pulse trains; range sidelobe suppression; range sidelobes; receive filters; received signal; receiver output; sequences controls; signal-to-noise ratio; spectral null; zero-Doppler axis; Delay; Doppler effect; Doppler radar; Joints; Receivers; Signal to noise ratio;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Signals, Systems and Computers (ASILOMAR), 2011 Conference Record of the Forty Fifth Asilomar Conference on
Conference_Location :
Pacific Grove, CA
ISSN :
1058-6393
Print_ISBN :
978-1-4673-0321-7
Type :
conf
DOI :
10.1109/ACSSC.2011.6190398
Filename :
6190398
Link To Document :
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