An embedding approach to frequency-domain and subband adaptive filtering

Frequency-domain and subband implementations improve the computational efficiency and the convergence rate of adaptive schemes. The well-known multidelay adaptive filter (MDF) belongs to this class of block adaptive structures and is a DFT-based algorithm. We develop adaptive structures that are bas...

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Bibliographic Details
Published inIEEE transactions on signal processing Vol. 48; no. 9; pp. 2607 - 2619
Main Authors Merched, R., Sayed, A.H.
Format Journal Article
LanguageEnglish
Published New York, NY IEEE 01.09.2000
Institute of Electrical and Electronics Engineers
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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Online AccessGet full text
ISSN1053-587X
1941-0476
1941-0476
DOI10.1109/78.863066

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Summary:Frequency-domain and subband implementations improve the computational efficiency and the convergence rate of adaptive schemes. The well-known multidelay adaptive filter (MDF) belongs to this class of block adaptive structures and is a DFT-based algorithm. We develop adaptive structures that are based on the trigonometric transforms, discrete cosine transform (DCT) and discrete sine transform (DST), and on the discrete Hartley transform (DHT). As a result, these structures involve only real arithmetic and are attractive alternatives in cases where the traditional DFT-based scheme exhibits poor performance. The filters are derived by first presenting a derivation for the classical DFT based filter that allows us to pursue these extensions immediately. The approach used in this paper also provides further insights into subband adaptive filtering.
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ISSN:1053-587X
1941-0476
1941-0476
DOI:10.1109/78.863066