DocumentCode
3039505
Title
Convergence properties of an adaptive digital lattice filter
Author
Honig, Michael ; Messerschmitt, David G.
Author_Institution
University of California, Berkeley, California
Volume
5
fYear
1980
fDate
29312
Firstpage
984
Lastpage
988
Abstract
Convergence properties of a continuously adaptive digital lattice filter used as a linear predictor are investigated for both an unnormalized and a normalized gradient adaptation algorithm. The PARCOR coefficient mean value and the output mean square error are approximated and a simple model is described which approximates these quantities as functions of time. Calculated curves using this model are compared with simulation results. Results obtained for a two stage lattice are then compared with the two-stage 1ms transversal filter algorithm, demonstrating that it is possible but unlikely for the transversal filter to converge faster than the analogous lattice filter.
Keywords
Adaptive filters; Convergence; Digital filters; Equations; Laboratories; Lattices; Nonlinear filters; Sampling methods; Speech coding; Transversal filters;
fLanguage
English
Publisher
ieee
Conference_Titel
Acoustics, Speech, and Signal Processing, IEEE International Conference on ICASSP '80.
Type
conf
DOI
10.1109/ICASSP.1980.1170858
Filename
1170858
Link To Document