DocumentCode
108492
Title
Optimal Adaptive Waveform Design for Cognitive MIMO Radar
Author
Huleihel, Wasim ; Tabrikian, Joseph ; Shavit, R.
Author_Institution
Dept. of Electr. & Comput. Eng., Ben-Gurion Univ. of the Negev, Beer-Sheva, Israel
Volume
61
Issue
20
fYear
2013
fDate
Oct.15, 2013
Firstpage
5075
Lastpage
5089
Abstract
This paper addresses the problem of adaptive waveform design for estimation of parameters of linear systems. This problem arises in several applications such as radar, sonar, or tomography. In the proposed technique, the transmit/input signal waveform is optimally determined at each step based on the observations in the previous steps. The waveform is determined to minimize the Bayesian Cramér-Rao bound (BCRB) or the Reuven-Messer bound (RMB) for estimation of the unknown system parameters at each step. The algorithms are tested for spatial transmit waveform design in multiple-input multiple-output radar target angle estimation at very low signal-to-noise ratio. The proposed techniques allow to automatically focusing the transmit beam toward the target direction. The simulations show that the proposed adaptive waveform design methods achieve significantly higher rate of performance improvement as a function of the pulse index, compared to other signal transmission methods, in terms of estimation accuracy.
Keywords
MIMO radar; cognitive radio; parameter estimation; BCRB; Bayesian Cramér-Rao bound; RMB; Reuven-Messer bound; cognitive MIMO radar; estimation accuracy; linear system; multiple-input multiple-output radar target angle estimation; optimal adaptive waveform design; parameter estimation; performance improvement; sonar; spatial transmit waveform design; tomography; transmit beam; Adaptive waveform design; Bayesian Cramér-Rao bound (BCRB); Reuven-Messer bound (RMB); cognitive radar (CR); waveform optimization;
fLanguage
English
Journal_Title
Signal Processing, IEEE Transactions on
Publisher
ieee
ISSN
1053-587X
Type
jour
DOI
10.1109/TSP.2013.2269045
Filename
6541985
Link To Document