DocumentCode :
9429
Title :
Min-Max Approximation of Transfer Functions With Application to Filter Design
Author :
Xianwei Li ; Huijun Gao
Author_Institution :
Res. Inst. of Intell. Control & Syst., Harbin Inst. of Technol., Harbin, China
Volume :
63
Issue :
1
fYear :
2015
fDate :
Jan.1, 2015
Firstpage :
31
Lastpage :
40
Abstract :
This paper investigates the problem of frequency-specific (FS) model approximation of transfer functions using a min-max approach. The objective is to find an approximation model for a transfer function such that the maximum error gain over a specific frequency range is minimized. First, a linear matrix inequality condition characterizing the FS gain of a transfer function is derived by using the generalized Kalman-Yakubovich-Popov lemma, and then a simple iterative approach is proposed to optimize the approximation model. Numerical experiments show that the proposed approach can produce better approximation models over a specific frequency range than some existing approaches. Moreover, it is indicated how to apply the proposed approximation approach to the design problem of infinite impulsive response digital filters, and design examples clearly illustrate that the proposed design flow can generate filters comparable with the latest design method.
Keywords :
approximation theory; digital filters; iterative methods; minimax techniques; transfer functions; Kalman-Yakubovich-Popov lemma; approximation model; design problem; frequency-specific model approximation; infinite impulsive response digital filters; iterative approach; maximum error gain; min-max approximation; transfer functions; Approximation methods; Finite impulse response filters; Information filters; Modeling; Reduced order systems; Transfer functions; Model approximation; digital filter; infinite impulsive response (IIR); transfer function;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/TSP.2014.2364787
Filename :
6935005
Link To Document :
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