DocumentCode :
1062400
Title :
A Mean-Square Stability Analysis of the Least Mean Fourth Adaptive Algorithm
Author :
Hübscher, Pedro Inácio ; Bermudez, José Carlos M ; Nascimento, Vítor H.
Author_Institution :
INPE-Nat. Inst. for Space Res.
Volume :
55
Issue :
8
fYear :
2007
Firstpage :
4018
Lastpage :
4028
Abstract :
This paper presents a new convergence analysis of the least mean fourth (LMF) adaptive algorithm, in the mean square sense. The analysis improves previous results, in that it is valid for non-Gaussian noise distributions and explicitly shows the dependence of algorithm stability on the initial conditions of the weights. Analytical expressions are derived presenting the relationship between the step size, the initial weight error vector, and mean-square stability. The analysis assumes a white zero-mean Gaussian reference signal and an independent, identically distributed (i.i.d.) measurement noise with any even probability density function (pdf). It has been shown by Nascimento and Bermudez ["Probability of Divergence for the Least-Mean Fourth (LMF) Algorithm," IEEE Transactions on Signal Processing, vol 54, no. 4, pp. 1376-1385, Apr. 2006] that the LMF algorithm is not mean-square stable for reference signals whose pdfs have infinite support. However, the probability of divergence as a function of the step size value tends to rise abruptly only when it moves past a given threshold. Our analysis provides a simple (and yet precise) estimate of the region of quick rise in the probability of divergence. Hence, the present analysis is useful for predicting algorithm instability in most practical applications.
Keywords :
Gaussian noise; adaptive estimation; adaptive filters; convergence of numerical methods; least mean squares methods; probability; signal processing; adaptive estimation; adaptive filter; convergence analysis; error signal; least mean fourth adaptive algorithm; mean-square stability analysis; nonGaussian noise distribution; probability density function; white zero-mean Gaussian reference signal; Adaptive algorithm; Algorithm design and analysis; Convergence; Density measurement; Gaussian noise; Noise measurement; Probability density function; Signal analysis; Signal processing algorithms; Stability analysis; Adaptive estimation; adaptive filters; adaptive systems; convergence analysis; least mean fourth; stability;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/TSP.2007.894423
Filename :
4276974
Link To Document :
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