DocumentCode :
894444
Title :
A frequency domain model for `filtered´ LMS algorithms-stability analysis, design, and elimination of the training mode
Author :
Feintuch, Paul L. ; Bershad, Neil J. ; Lo, Allen K.
Author_Institution :
Hughes Aircraft Co., Fullerton, CA, USA
Volume :
41
Issue :
4
fYear :
1993
fDate :
4/1/1993 12:00:00 AM
Firstpage :
1518
Lastpage :
1531
Abstract :
A frequency domain model of the filtered LMS algorithm is presented for analyzing the behavior of the weights during adaptation. In particular, expressions for stable operation of the algorithm are derived as a function of the algorithm step size, the input signal power, and the transfer functions of the linear filters. The expressions show that algorithm stability can be achieved over a frequency band of interest by inserting an appropriately chosen delay in the reference input to the LMS algorithm weight update equation. This result implies that it is not necessary to use a training mode to estimate the loop transfer functions before or during adaptation if the input is limited to a band of frequencies. It is only necessary to know the approximate delay introduced by the transfer functions in the band. The single delay parameter can be estimated much more easily than the entire transfer function. Simulations of the time domain algorithm are presented to support the theoretical predictions of the frequency domain model
Keywords :
acoustic noise; acoustic signal processing; adaptive filters; frequency-domain analysis; least squares approximations; noise abatement; stability; transfer functions; active acoustic noise canceller; delay parameter; design; filtered LMS algorithms; frequency domain model; stability analysis; training mode elimination; transfer functions; weights; Algorithm design and analysis; Delay estimation; Equations; Frequency domain analysis; Frequency estimation; Least squares approximation; Nonlinear filters; Predictive models; Stability; Transfer functions;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/78.212728
Filename :
212728
Link To Document :
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