DocumentCode :
1484220
Title :
Cascaded Detector for Range-Spread Target in Non-Gaussian Clutter
Author :
Jian, Tao ; He, You ; Su, Feng ; Qu, Changwen ; Ping, Dianfa
Author_Institution :
Naval Aeronaut. & Astronaut. Univ., Yantai, China
Volume :
48
Issue :
2
fYear :
2012
fDate :
4/1/2012 12:00:00 AM
Firstpage :
1713
Lastpage :
1725
Abstract :
The work presented here addresses adaptive range-spread target detection in spherically invariant random vector (SIRV) clutter based on two-step generalized likelihood ratio test (GLRT) design procedure. Firstly, with known normalized clutter covariance matrix (NCCM), a robust detector with constant false alarm rate (CFAR) property is proposed, which cascades a detector based on the GLRT for target scatterer in each range cell and two binary integrators. Subsequently, the optimum parameters for the cascaded detector are obtained. Furthermore, by replacing the ideal NCCM with the approximate maximum likelihood (ML) estimated matrix based on secondary data only, the corresponding adaptive detector with approximate CFAR property is also devised. Moreover, the formulas relating the probability of false alarm to the detection threshold are deduced. The performance assessment conducted by Monte Carlo simulation confirms the effectiveness and robustness of the proposed detectors.
Keywords :
Gaussian processes; adaptive signal detection; approximation theory; covariance matrices; maximum likelihood estimation; object detection; radar clutter; radar target recognition; CFAR property approximation; GLRT; Monte Carlo simulation; NCCM; adaptive detector; adaptive range-spread target detection; approximate maximum likelihood estimated matrix; binary integrators; cascaded detector; constant false alarm rate; false alarm probability; nonGaussian clutter; normalized clutter covariance matrix; optimum parameter; robust detector; spherically invariant random vector clutter; target scatterer; two-step generalized likelihood ratio test design procedure; Bismuth; Clutter; Covariance matrix; Detectors; Object detection; Optimized production technology; Robustness;
fLanguage :
English
Journal_Title :
Aerospace and Electronic Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9251
Type :
jour
DOI :
10.1109/TAES.2012.6178091
Filename :
6178091
Link To Document :
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