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
fDate :
8/1/1984 12:00:00 AM
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;
Journal_Title :
Electronic Circuits and Systems, IEE Proceedings G
DOI :
10.1049/ip-g-1:19840031