Title :
Weighted least-squares approximation of FIR by IIR digital filters
Author :
Brandenstein, Hartmut ; Unbehauen, Rolf
Author_Institution :
Philips Semiconductors TCMC, Numberg, Germany
fDate :
3/1/2001 12:00:00 AM
Abstract :
This paper presents a method for the weighted least-squares approximation of finite impulse response (FIR) filters by infinite impulse response (IIR) filters. It is shown, how a solution to this approximation problem can be obtained by solving a related pure least-squares approximation problem. For the latter, we utilize a generalized version of a previously published technique with low computational complexity and guaranteed stability of the IIR filters. Unlike the well-established model-reduction approaches that are carried out in the state space, our method works directly with the numerator and denominator coefficients of the transfer functions. Thus, the influence of finite-precision arithmetic on the results is small. This makes our approach applicable for the approximation of large-order FIR filters and allows the usage of arbitrarily shaped weighting functions. It is shown that our method can successfully be employed to achieve a uniform approximation
Keywords :
FIR filters; IIR filters; circuit stability; computational complexity; digital filters; least squares approximations; network synthesis; transfer functions; IIR digital filters; arbitrarily shaped weighting functions; denominator coefficients; digital signal processing applications; finite impulse response filters; finite-precision arithmetic; guaranteed stability; infinite impulse response filters; large-order FIR filters; least-squares approximation; low computational complexity; numerator coefficients; transfer functions; uniform approximation; weighted least-squares approximation; Computational complexity; Delay; Digital filters; Finite impulse response filter; Frequency; IIR filters; Linear approximation; Stability; State-space methods; Transfer functions;
Journal_Title :
Signal Processing, IEEE Transactions on