Title :
A WISE method for designing IIR filters
Author :
Tarczynski, Andrzej ; Cain, Gerald D. ; Hermanowicz, Ewa ; Rojewski, Miroslaw
Author_Institution :
Dept. of Electron. Syst., Univ. of Westminster, London, UK
fDate :
7/1/2001 12:00:00 AM
Abstract :
The problem of designing optimal digital IIR filters with frequency responses approximating arbitrarily chosen complex functions is considered. The real-valued coefficients of the filter´s transfer function are obtained by numerical minimization of carefully formulated cost, which is referred here to as the weighted integral of the squared error (WISE) criterion. The WISE criterion linearly combines the WLS criterion that is used in the weighted least squares approach toward filter design and some time-domain components. The WLS part of WISE enforces the quality of the frequency response of the designed filter, while the time-domain part of the WISE criterion restricts the positions of the filter´s poles to the interior of an origin-centred circle with arbitrary radius. This allows one not only to achieve stability of the filter but also to maintain some safety margins. A great advantage of the proposed approach is that it does not impose any constraints on the optimization problem and the optimal filter can be sought using off-the-shelf optimization procedures. The power of the proposed approach is illustrated with filter design examples that compare favorably with results published in research literature
Keywords :
IIR filters; circuit optimisation; circuit stability; digital filters; discrete time filters; frequency response; integral equations; least squares approximations; network synthesis; IIR filters design; WISE method; WLS criterion; complex functions; discrete time filters; filter poles; filter stability; frequency response; frequency-domain components; numerical minimization; off-the-shelf optimization procedures; optimal digital IIR filters; optimal filter; real-valued coefficients; safety margins; time-domain components; transfer function; weighted integral of the squared error; weighted least squares; Constraint optimization; Cost function; Design methodology; Frequency response; IIR filters; Least squares approximation; Least squares methods; Stability; Time domain analysis; Transfer functions;
Journal_Title :
Signal Processing, IEEE Transactions on