DocumentCode
59899
Title
Generalized Robust Shrinkage Estimator and Its Application to STAP Detection Problem
Author
Pascal, F. ; Chitour, Y. ; Yihui Quek
Author_Institution
SONDRA, Supelec, Gif-sur-Yvette, France
Volume
62
Issue
21
fYear
2014
fDate
Nov.1, 2014
Firstpage
5640
Lastpage
5651
Abstract
Recently, in the context of covariance matrix estimation, in order to improve as well as to regularize the performance of the Tyler´s estimator [1] also called the Fixed-Point Estimator (FPE) [2], a “shrinkage” fixed-point estimator has been originally introduced in [3]. First, this work extends the results of [4], [5] by giving the general solution of the “shrinkage” fixed-point algorithm. Secondly, by analyzing this solution, called the generalized robust shrinkage estimator, we prove that this solution converges to a unique solution when the shrinkage parameter (losing factor) tends to 0. This solution is exactly the FPE with the trace of its inverse equal to the dimension of the problem. This general result allows one to give another interpretation of the FPE and more generally, on the Maximum Likelihood approach for covariance matrix estimation when constraints are added. Then, some simulations illustrate our theoretical results as well as the way to choose an optimal shrinkage factor. Finally, this work is applied to a Space-Time Adaptive Processing (STAP) detection problem on real STAP data.
Keywords
covariance matrices; maximum likelihood estimation; signal detection; space-time adaptive processing; (STAP) detection problem on real STAP data; STAP detection problem; Tyler estimator; covariance matrix estimation; generalized robust shrinkage estimator; maximum likelihood estimation; optimal shrinkage factor; shrinkage fixed point estimator; space-time adaptive processing; Context; Covariance matrices; Equations; Estimation; Robustness; Signal processing; Signal processing algorithms; Covariance matrix estimation; Tyler´s Estimator; fixed point estimator; robust shrinkage estimation;
fLanguage
English
Journal_Title
Signal Processing, IEEE Transactions on
Publisher
ieee
ISSN
1053-587X
Type
jour
DOI
10.1109/TSP.2014.2355779
Filename
6894189
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