DocumentCode :
3612970
Title :
Mismatched filter optimization for radar applications using quadratically constrained quadratic programs
Author :
Rabaste, Olivier ; Savy, Laurent
Author_Institution :
DEMR/TSI, ONERA, Palaiseau, France
Volume :
51
Issue :
4
fYear :
2015
Firstpage :
3107
Lastpage :
3122
Abstract :
This paper deals with the problem of optimal filter computation for specific radar applications.We consider here a method for finding the mismatched filter that minimizes the peak-to-sidelobe ratio. This method is based on a reformulation of the optimization problem as a convex quadratically constrained quadratic program (QCQP) and ensures that any found solution is a global solution of the problem. This formulation also enables the insertion of additional constraints, e.g., a constraint on the loss in processing gain of the optimal filter. We study in this context the robustness of the proposed filter to phase errors. Then, we propose to adapt this QCQP to deal with Doppler shifts and provide results for specific applications. Next, we investigate the possibility to use mismatched filters to reduce the high sidelobe level observed along the range axis of multiple-input multiple-output (MIMO) ambiguity functions produced by phase codes. We propose two MIMO receiver architectures that enable the integration of mismatched filters. The first architecture tries to minimize all autocorrelations and cross-correlations of the transmitted phase codes, while the second architecture computes mismatched filters adapted to the signals transmitted in different angular direction. The latter approach enables us to obtain a MIMO ambiguity function close to the perfect thumbtack shape.
Keywords :
Doppler radar; MIMO radar; adaptive filters; convex programming; phase coding; quadratic programming; radar receivers; Doppler shift; MIMO ambiguity function; MIMO receiver architecture; QCQP; autocorrelation; convex quadratically constrained quadratic programming; cross-correlation; mismatched filter optimization; multiple-input multiple-output ambiguity function; peak-to-sidelobe ratio; phase code; radar application; Computer architecture; Doppler shift; MIMO radar; Optimization; Radar applications; Signal to noise ratio;
fLanguage :
English
Journal_Title :
Aerospace and Electronic Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9251
Type :
jour
DOI :
10.1109/TAES.2015.130769
Filename :
7376241
Link To Document :
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