DocumentCode :
2620734
Title :
Iterative constrained least squares design of near perfect reconstruction pseudo QMF banks
Author :
Rossi, Michel ; Zhang, Jin-Yun ; Steenaart, Willem
Author_Institution :
Ottawa Univ., Ont., Canada
Volume :
2
fYear :
1996
fDate :
26-29 May 1996
Firstpage :
766
Abstract :
This paper presents a simple and efficient method to design M-band near perfect reconstruction (NPR) pseudo quadrature mirror filter (QMF) banks. This method does not rely on a conventional computationally intensive nonlinear optimization method but rather on an iterative constrained least squares algorithm. The algorithm is rapidly converging, simple to implement and flexible. Its convergence does not depend on the starting point. Moreover an iteratively calculated weighting function can be used to shape the stopband of the prototype filter and perform the minimax or the gain constrained least squares approximation. Design examples and a MATLAB program implementing the proposed algorithm are included
Keywords :
band-pass filters; circuit CAD; convergence of numerical methods; filtering theory; iterative methods; least squares approximations; quadrature mirror filters; signal reconstruction; M-band near perfect reconstruction filter; MATLAB program; converging algorithm; gain constrained least squares approximation; iterative constrained least squares algorithm; iterative constrained least squares design; minimax constrained least squares approximation; near perfect reconstruction pseudoQMF banks; prototype filter; pseudo-quadrature mirror filter banks; stopband; weighting function; Convergence; Design methodology; Filter bank; Iterative algorithms; Iterative methods; Least squares methods; Minimax techniques; Mirrors; Optimization methods; Prototypes;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electrical and Computer Engineering, 1996. Canadian Conference on
Conference_Location :
Calgary, Alta.
ISSN :
0840-7789
Print_ISBN :
0-7803-3143-5
Type :
conf
DOI :
10.1109/CCECE.1996.548265
Filename :
548265
Link To Document :
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