DocumentCode :
843241
Title :
Discrete wavelet transform based on cyclic convolutions
Author :
Murakami, Hideo
Author_Institution :
Kanazawa Inst. of Technol., Ishikawa, Japan
Volume :
52
Issue :
1
fYear :
2004
Firstpage :
165
Lastpage :
174
Abstract :
A filterbank in which cyclic convolutions are used in place of linear convolutions will be referred to as a cyclic convolution filterbank (CCFB). A dyadic tree-structured CCFB can be used to perform a discrete wavelet transform suitable for coding based on symmetric extension methods. This paper derives two types of efficient implementation techniques for the tree-structured CCFB: one using complex arithmetic and one using only real arithmetic. In addition, the present paper analyzes in detail the perfect reconstruction (PR) condition for the two-channel CCFB and shows that this condition is much less restrictive than that of usual two-channel filterbanks. When each of the two-channel CCFBs constituting a tree-structured CCFB is designed to be PR, the whole system is PR. A quadrature mirror filter (QMF) CCFB having the PR property is demonstrated to be easily designed using a standard filter design subroutine. In contrast, designing a linear-phase PR FIR QMF bank that has good frequency response is not possible when filters are realized by linear convolutions.
Keywords :
FIR filters; channel bank filters; convolution; discrete wavelet transforms; quadrature mirror filters; channel filterbank; complex arithmetic; cyclic convolution; discrete wavelet transform; dyadic tree-structured filterbank; perfect reconstruction condition; quadrature mirror filter; real arithmetic; symmetric extension method; Arithmetic; Convolution; Convolutional codes; Discrete wavelet transforms; Filter bank; Finite impulse response filter; Image coding; Image reconstruction; Nonlinear filters; Signal analysis;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/TSP.2003.819979
Filename :
1254034
Link To Document :
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