A nonlinear method of frequency estimation in noise

A novel time-domain method of estimation of instantaneous frequency of signals under the influence of noise is presented. The methodology is exemplified by its application to the estimation of Doppler frequency shift which is encountered both in aerospace and biomedical engineering. The estimation m...

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Published inThe 2002 45th Midwest Symposium on Circuits and Systems, 2002. MWSCAS-2002 Vol. 3; p. III
Main Authors Ziarani, A.K., Konrad, A.
Format Conference Proceeding
LanguageEnglish
Published IEEE 2002
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Abstract A novel time-domain method of estimation of instantaneous frequency of signals under the influence of noise is presented. The methodology is exemplified by its application to the estimation of Doppler frequency shift which is encountered both in aerospace and biomedical engineering. The estimation method is a nonlinear adaptive algorithm which exhibits a high degree of immunity to both external noise and misadjustment of internal parameters while offering structural simplicity crucial for real-time applications.
AbstractList A novel time-domain method of estimation of instantaneous frequency of signals under the influence of noise is presented. The methodology is exemplified by its application to the estimation of Doppler frequency shift which is encountered both in aerospace and biomedical engineering. The estimation method is a nonlinear adaptive algorithm which exhibits a high degree of immunity to both external noise and misadjustment of internal parameters while offering structural simplicity crucial for real-time applications.
Author Ziarani, A.K.
Konrad, A.
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Snippet A novel time-domain method of estimation of instantaneous frequency of signals under the influence of noise is presented. The methodology is exemplified by its...
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StartPage III
SubjectTerms Adaptive filters
Biomedical measurements
Frequency estimation
Phase estimation
Phase noise
Pollution measurement
Radar signal processing
Signal processing algorithms
Time domain analysis
Working environment noise
Title A nonlinear method of frequency estimation in noise
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Volume 3
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