DocumentCode :
1658219
Title :
A transient analysis for the convex combination of adaptive filters
Author :
Nascimento, Vítor H. ; Silva, Magno T M ; Candido, Renato ; Arenas-García, Jerónimo
Author_Institution :
Univ. of Sao Paulo, Sao Paulo, Brazil
fYear :
2009
Firstpage :
53
Lastpage :
56
Abstract :
Combination schemes are gaining attention as an interesting way to improve adaptive filter performance. In this paper we pay attention to a particular convex combination scheme with nonlinear adaptation that has recently been shown to be universal -i.e., to perform at least as the best component filter- in steady-state; however, no theoretical model for the transient has been provided yet. By relying on Taylor Series approximations of the nonlinearities, we propose a theoretical model for the transient behavior of such convex combinations. In particular, we provide expressions for the time evolution of the mean and the variance of the mixing parameter, as well as for the mean square overall filter convergence. The accuracy of the model is analyzed for the particular case of a combination of two LMS filters with different step sizes, explaining also how our results can help the designer to adjust the free parameters of the scheme.
Keywords :
adaptive filters; approximation theory; least mean squares methods; transient analysis; LMS filters; Taylor series approximations; adaptive filters; mean square overall filter convergence; mixing parameter; nonlinear adaptation; particular convex combination; time evolution; transient analysis; Adaptive filters; Convergence; Error correction; Least squares approximation; Noise reduction; Resonance light scattering; Steady-state; Taylor series; Transient analysis; Transversal filters; Adaptive filters; LMS algorithm; convex combination; transient analysis;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Statistical Signal Processing, 2009. SSP '09. IEEE/SP 15th Workshop on
Conference_Location :
Cardiff
Print_ISBN :
978-1-4244-2709-3
Electronic_ISBN :
978-1-4244-2711-6
Type :
conf
DOI :
10.1109/SSP.2009.5278642
Filename :
5278642
Link To Document :
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