DocumentCode
703449
Title
A fast prewhitened affine projection algorithm
Author
Maouche, Karim ; Slock, Dirk T. M.
Author_Institution
Mobile Commun. Dept., Inst. Eurecom, Sophia Antipolis, France
fYear
1998
fDate
8-11 Sept. 1998
Firstpage
1
Lastpage
4
Abstract
We derive a new adaptive filtering algorithm called the Instrumental Variable Affine Projection (IVAP) algorithm and give its fast version (IVFAP algorithm). The IVAP algorithm departs from the AP algorithm and uses an IV. The IV process is generated in a way such that the new algorithm combines between the AP and the Fast Newton Transversal Filter (FNTF) algorithms. Simulations show that the IVAP algorithm is more robust to noise than the AP algorithm. With the IV, the sample covariance matrix loses its Hermitian property and its displacement structure is different from the one of the AP algorithm. Consequently, the derivation of a fast version is done by deriving the IV Sliding Window Covariance Fast Transversal Filter (IV SWC FTF) algorithm. Using this and other ingredients, we derive the IVFAP algorithm whose computational complexity is nearly the same as the one of the FAP algorithm.
Keywords
Hermitian matrices; Newton method; adaptive filters; computational complexity; covariance matrices; filtering theory; transversal filters; FNTF algorithm; Hermitian property; IV SWC FTF algorithm; IV sliding window covariance FTF algorithm; IVAP algorithm; IVFAP algorithm; adaptive filtering algorithm; computational complexity; covariance matrix; displacement structure; fast Newton transversal filter algorithm; fast prewhitened affine projection algorithm; fast transversal filter algorithm; instrumental variable affine projection; Covariance matrices; Heuristic algorithms; Least squares approximations; Noise; Prediction algorithms; Projection algorithms; Signal processing algorithms;
fLanguage
English
Publisher
ieee
Conference_Titel
Signal Processing Conference (EUSIPCO 1998), 9th European
Conference_Location
Rhodes
Print_ISBN
978-960-7620-06-4
Type
conf
Filename
7089920
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