DocumentCode
929224
Title
New method for generating two-variable VSHPs and its application in the design of two-dimensional recursive digital filters with prescribed magnitude and constant group delay responses
Author
Ahmadi, M. ; Ramachandran, V.
Author_Institution
University of Windsor, Department of Electrical Engineering, Windsor, Canada
Volume
131
Issue
4
fYear
1984
fDate
8/1/1984 12:00:00 AM
Firstpage
151
Lastpage
155
Abstract
In the paper a method is presented for the design of 2-D stable recursive digital filters satisfying prescribed magnitude and constant group delay responses. This technique uses the properties of positive definite matrices and their application in generating 2-variable Very Strictly Hurwitz Polynomials (VSHPs), which will be assigned to the denominator of a 2-D analogue reference filter. Bilinear transformations are then applied to the transfer function of the derived 2-D analogue reference filter to obtain the discrete version of the 2-D filter. Parameters of the discrete 2-D filter can be used as the variables of optimisation to minimise the leastmean-square error between the desired and designed magnitude and group delay responses of the filter. To show the usefulness of the technique, an example is given.
Keywords
filtering and prediction theory; matrix algebra; polynomials; two-dimensional digital filters; 2-D analogue reference filter; bilinear transformations; constant group delay responses; least-mean-square-error minimisation; magnitude response; optimisation; positive definite matrices; transfer function; two-dimensional recursive digital filters; two-variable very strictly Hurwitz polynomials;
fLanguage
English
Journal_Title
Electronic Circuits and Systems, IEE Proceedings G
Publisher
iet
ISSN
0143-7089
Type
jour
DOI
10.1049/ip-g-1:19840031
Filename
4646153
Link To Document