DocumentCode :
1985059
Title :
Separation of signals and cross-terms in the Wigner distribution using adaptive filtering
Author :
Amin, Moeness G. ; Allen, Fred
Author_Institution :
Dept. of Electr. Eng., Villanova Univ., PA, USA
fYear :
1989
fDate :
14-16 Aug 1989
Firstpage :
853
Abstract :
A frequency domain least-mean-squares (LMS) algorithm is used to both track and suppress cross terms in a Wigner distribution, allowing a much better reading of the time-varying distribution of power over frequency. In the adaptive filtering approach, the desired input (primary) takes the Pseudo Wigner distributions (PWDs) for different data blocks, while the filter input (reference) is assigned unit values. Due to the nature of the primary and reference data, the frequency domain filter adapts to the constant sinusoidal peak values. However, because of the uncorrelatedness, it fails to track the time-varying components in the desired signal, leaving out the cross terms to propagate to the output filter error. The authors introduce the general approach of separating constant and time-varying components in the desired signal, leaving out the cross terms to propagate to the output filter error. The authors introduce the general approach of separating constant and time-varying spectral terms via the LMS harmonic canceler, in which the Fourier transform (FT) is applied to the data rather than the data kernel. It is shown that the problem translates into separating two sets (partition over [0,2π]) of spectral components according to their frequency. One set has constant values, and includes all frequencies which are integer multiples of 1/N (harmonics), where N is the transform block length
Keywords :
Fourier transforms; filtering and prediction theory; least squares approximations; signal processing; time-varying systems; Fourier transform; LMS harmonic canceler; Pseudo Wigner distributions; Wigner distribution; adaptive filtering; constant sinusoidal peak values; cross terms; data blocks; filter input; frequency domain least-mean-squares; integer multiples; spectral components; time-varying distribution; transform block length; Adaptive filters; Distributed computing; Fourier transforms; Frequency domain analysis; Harmonic analysis; Kernel; Least squares approximation; Power harmonic filters; Sampling methods; Signal generators;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Circuits and Systems, 1989., Proceedings of the 32nd Midwest Symposium on
Conference_Location :
Champaign, IL
Type :
conf
DOI :
10.1109/MWSCAS.1989.101989
Filename :
101989
Link To Document :
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