DocumentCode :
1409742
Title :
Design and multiplier-less implementation of a class of two-channel PR FIR filterbanks and wavelets with low system delay
Author :
Mao, J.S. ; Chan, S.C. ; Liu, W. ; Ho, K.L.
Author_Institution :
Victoria Univ., BC, Canada
Volume :
48
Issue :
12
fYear :
2000
fDate :
12/1/2000 12:00:00 AM
Firstpage :
3379
Lastpage :
3394
Abstract :
A new method for designing two-channel PR FIR filterbanks with low system delay is proposed. It is based on the generalization of the structure previously proposed by Phoong et al. (1995) Such structurally PR filterbanks are parameterized by two functions (β(z) and α(z)) that can be chosen as linear-phase FIR or allpass functions to construct FIR/IIR filterbanks with good frequency characteristics. The case of using identical β(z) and α(z) was considered by Phoong et al. with the delay parameter M chosen as 2N-1. In this paper, the more general ease of using different nonlinear-phase FIR functions for β(z) and α(z) is studied. As the linear-phase constraint is relaxed, the lengths of β(z) and α(z) are no longer restricted by the delay parameters of the filterbanks. Hence, higher stopband attenuation can still be achieved at low system delay. The design of the proposed low-delay filterbanks is formulated as a complex polynomial approximation problem, which can be solved by the Remez exchange algorithm or analytic formula with very low complexity. In addition, the orders and delay parameters can be estimated from the given filter specifications using a simple empirical formula. Therefore, low-delay two-channel PR filterbanks with flexible stopband attenuation and cutoff frequencies can be designed using existing filter design algorithms. The generalization of the present approach to the design of a class of wavelet bases associated with these low-delay filterbanks and its multiplier-less implementation using the sum of powers-of-two coefficients are also studied.
Keywords :
FIR filters; all-pass filters; channel bank filters; delays; linear phase filters; network synthesis; polynomial approximation; signal reconstruction; wavelet transforms; FIR/IIR filterbanks; Remez exchange algorithm; allpass function; complex polynomial approximation; cutoff frequencies; delay parameter; delay parameters; filter design algorithms; filter specifications; filterbanks design; frequency characteristics; high-pass filter; linear-phase FIR function; linear-phase constraint; low system delay; multiplier-less implementation; nonlinear-phase FIR functions; stopband attenuation; sum of powers-of-two coefficients; two-channel PR FIR filterbanks; wavelet bases; Algorithm design and analysis; Attenuation; Delay estimation; Delay systems; Design methodology; Finite impulse response filter; Frequency; IIR filters; Polynomials; Propagation delay;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/78.887000
Filename :
887000
Link To Document :
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