DocumentCode
1205126
Title
Design of arbitrary-phase variable digital filters using SVD-based vector-array decomposition
Author
Deng, Tian-Bo
Author_Institution
Dept. of Inf. Sci., Toho Univ., Chiba, Japan
Volume
52
Issue
1
fYear
2005
Firstpage
148
Lastpage
167
Abstract
This paper proposes a straightforward method for designing variable digital filters with arbitrary variable magnitude as well as arbitrary fixed-phase or variable fractional delay (VFD) responses. The basic idea is to avoid the complicated direct design of one-dimensional (1-D) variable digital filters by decomposing the original variable filter design problem into easier subproblems that only require constant 1-D filter designs and multidimensional polynomial approximations. Through constant 1-D filter designs and multidimensional polynomial fits, we can easily obtain a variable digital filter satisfying the given variable design specifications. To decompose the original variable filter design into constant 1-D filter designs and multidimensional polynomial fits, a new multidimensional complex array decomposition called vector array decomposition (VAD) is proposed, which is based on two new theorems using the singular value decomposition (SVD). Once the VAD is obtained, the subproblems can be easily solved. Furthermore, we show that the VAD can also be generalized to the weighted least squares (WLS) case (WLS-VAD) for the WLS variable filter design. Three design examples are given to illustrate that the WLS-VAD and VAD-based techniques are considerably efficient for designing variable digital filters with arbitrary variable magnitude and arbitrary fixed-phase or VFD responses.
Keywords
delays; digital filters; least squares approximations; singular value decomposition; 1D variable digital filters; SVD-based vector-array decomposition; arbitrary fixed-phase response; arbitrary-phase variable digital filters; multidimensional complex array decomposition; multidimensional polynomial approximation; singular value decomposition; variable fractional delay response; vector array decomposition; weighted least squares VAD; Band pass filters; Delay; Design methodology; Digital filters; Finite impulse response filter; Frequency; IIR filters; Least squares methods; Multidimensional systems; Polynomials;
fLanguage
English
Journal_Title
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher
ieee
ISSN
1549-8328
Type
jour
DOI
10.1109/TCSI.2004.840108
Filename
1377551
Link To Document