DocumentCode
763469
Title
Nonparametric waveform estimation using filter banks
Author
Sattar, Farook ; Salomonsson, Göran
Author_Institution
Signal Process. Group, Lund Univ., Sweden
Volume
44
Issue
2
fYear
1996
fDate
2/1/1996 12:00:00 AM
Firstpage
239
Lastpage
247
Abstract
This paper presents a nonparametric method for estimating waveforms of event-related signals embedded in additive noise. The signals have transient character with varying shapes and arrival times. The estimation method is based on a series expansion of the signal by a set of basis functions. Using a template that contains a priori information, two sets of basis functions are designed by means of one uniform and one nonuniform bandpass filter bank. Then, signal-dependent basis functions are obtained. When no a priori information about the signal is available, signal-independent basis functions are constituted by the impulse responses of the subfilters. Delayed copies are created for each basis function with which time jitter in arrival time of the signal can be handled. The method gives a robust estimate of the waveform of transient signals having unknown waveforms and arrival times since no model assumptions are needed. One application is discussed through examples and compared with the estimate, which is obtained by the Karhunen-Loeve expansion
Keywords
band-pass filters; estimation theory; filtering theory; jitter; noise; random processes; series (mathematics); signal processing; transient analysis; transient response; Karhunen-Loeve expansion; additive noise; arrival times; basis functions; estimation method; event-related signals; filter banks; impulse responses; nonparametric method; nonparametric waveform estimation; nonuniform bandpass filter bank; random process; series expansion; signal-dependent basis functions; subfilters; template; time jitter; transient signals; uniform bandpass filter bank; Band pass filters; Biomedical signal processing; Channel bank filters; Delay; Filter bank; Finite impulse response filter; Jitter; Noise shaping; Robustness; Signal processing;
fLanguage
English
Journal_Title
Signal Processing, IEEE Transactions on
Publisher
ieee
ISSN
1053-587X
Type
jour
DOI
10.1109/78.485921
Filename
485921
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