DocumentCode :
942748
Title :
Cosine-modulated FIR filter banks satisfying perfect reconstruction
Author :
Koilpillai, R. David ; Vaidyanathan, P.P.
Author_Institution :
General Electric Corp. Res. & Dev. Center, Schenectady, NY, USA
Volume :
40
Issue :
4
fYear :
1992
fDate :
4/1/1992 12:00:00 AM
Firstpage :
770
Lastpage :
783
Abstract :
The authors obtain a necessary and sufficient condition on the 2 M (M=number of channels) polyphase components of a linear-phase prototype filter of length N=2 mM (where m=an arbitrary positive integer), such that the polyphase component matrix of the modulated filter is lossless. The losslessness of the polyphase component matrix, in turn, is sufficient to ensure that the analysis/synthesis system satisfies perfect reconstruction (PR). Using this result, a novel design procedure is presented based on the two-channel lossless lattice. This enables the design of a large class of FIR (finite impulse response)-PR filter banks, and includes the N =2M case. It is shown that this approach requires fewer parameters to be optimized than in the pseudo-QMF (quadrature mirror filter) designs and in the lossless lattice based PR-QMF designs (for equal length filters in the three designs). This advantage becomes significant when designing long filters for large M. The design procedure and its other advantages are described in detail. Design examples and comparisons are included
Keywords :
digital filters; matrix algebra; modulation; analysis/synthesis system; cosine modulated FIR filter banks; linear-phase prototype filter; lossless matrix; modulated filter; necessary condition; perfect reconstruction; polyphase component matrix; quadrature mirror filter; sufficient condition; two-channel lossless lattice; Channel bank filters; Design optimization; Digital signal processing; Filter bank; Finite impulse response filter; Image reconstruction; Lattices; Mirrors; Prototypes; Sufficient conditions;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/78.127951
Filename :
127951
Link To Document :
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