DocumentCode :
1364019
Title :
Least squares approximation of perfect reconstruction filter banks
Author :
Spurbeck, Mark S. ; Mullis, C.T.
Author_Institution :
Cirrus Logic, Broomfield, CO, USA
Volume :
46
Issue :
4
fYear :
1998
fDate :
4/1/1998 12:00:00 AM
Firstpage :
968
Lastpage :
978
Abstract :
Designing good causal filters for perfect reconstruction (PR) filter banks is a challenging task due to the unusual nature of the design constraints. We present a new least squares (LS) design methodology for approximating PRFBs that avoids most of these difficult constraints. The designer first selects a set of subband analysis filters from an almost unrestricted class of rational filters. Then, given some desired reconstruction delay, this design procedure produces the causal and rational synthesis filters that result in the best least squares approximation to a PRFB. This technique is built on a multi-input multi-output (MIMO) system model for filter banks derived from the filter bank polyphase representation. Using this model, we frame the LS approximation problem for PRFBs as a causal LS equalization problem for MIMO systems. We derive the causal LS solution to this design problem and present an algorithm for computing this solution. The resulting algorithm includes a MIMO spectral factorization that accounts for most of the complexity and computational cost for this design technique. Finally, we consider some design examples and evaluate their performance
Keywords :
MIMO systems; band-pass filters; computational complexity; delays; filtering theory; least squares approximations; matrix decomposition; signal reconstruction; signal synthesis; MIMO spectral factorization; MIMO system; algorithm; causal LS equalization; causal filter design; causal synthesis filter; complexity; computational cost; filter bank polyphase representation; least squares approximation; least squares design; multi-input multi-output system model; perfect reconstruction filter banks; performance evaluation; rational synthesis filter; reconstruction delay; subband analysis filters; Algorithm design and analysis; Channel bank filters; Computational efficiency; Delay; Design methodology; Filter bank; Finite impulse response filter; Least squares approximation; MIMO; Phase distortion;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/78.668550
Filename :
668550
Link To Document :
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