DocumentCode :
1100357
Title :
On the approximation of FIR by IIR digital filters
Author :
Bednar, J. Bee
Author_Institution :
Cities Service Company, Tulsa, OK
Volume :
31
Issue :
1
fYear :
1983
fDate :
2/1/1983 12:00:00 AM
Firstpage :
28
Lastpage :
34
Abstract :
Kaiser\´s empirical formula for finite impulse response (FIR) digital filter length, as a function of transition width and rejection band loss (together with the I_{0}-\\sinh window function), provides a simple FIR filter design algorithm. Recent developments in time series analysis provide a theoretical procedure for selecting the numerator and denominator orders of an infinite impulse response (IIR) digital filter whose frequency domain amplitude response is equivalent to that of a given FIR filter. In practice, this procedure has unfailingly indicated the correct denominator order, but has frequently selected a numerator order which produced a poor approximation to the desired frequency domain amplitude characteristics. Part of the problem has been due to the lack of a reasonable estimate of the quality of the approximation, and part has been due to a poor understanding of what the observed order selection criteria mean in an approximation setting. By relating the order selection algorithm to traditional methods for solving the linear predictive coding equations, this paper resolves both obstacles to minimal order approximation of FIR filters by IIR filters. As an added benefit, the relational analysis has the potential to provide an automated procedure for simultaneous order selection and IIR filter design and approximation.
Keywords :
Algorithm design and analysis; Approximation algorithms; Digital filters; Equations; Finite impulse response filter; Frequency domain analysis; IIR filters; Linear predictive coding; Optical arrays; Time series analysis;
fLanguage :
English
Journal_Title :
Acoustics, Speech and Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
0096-3518
Type :
jour
DOI :
10.1109/TASSP.1983.1164043
Filename :
1164043
Link To Document :
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