DocumentCode :
316811
Title :
A Doppler frequency estimate using the instantaneous frequency
Author :
Crestel, J. ; Emile, B. ; Guitton, M. ; Nard, D. Me
Author_Institution :
Rennes I Univ., France
Volume :
2
fYear :
1997
fDate :
2-4 Jul 1997
Firstpage :
777
Abstract :
In the preamble it is shown that, under a quasi-stationarity assumption of the multi-component Doppler signal. The assimilation of the Doppler frequency to the mean instantaneous frequency is consistent. Basically, this frequency can be estimated from the first moment of a quadratic time-frequency distribution. A robust estimator is investigated, and its sensitivity to the intrinsic noises of the radar sensor is quantified. For the purpose, a Doppler signal model is proposed so as to submit this estimator to a test signal. The theoretical development as well as the simulations prove the greater performance of the estimator which is derived from a localized first moment of the quadratic distribution. The underlying application concerns the real time measure of the movements of a car equipped with radar Doppler sensors
Keywords :
Doppler radar; automobiles; frequency estimation; radar applications; radar signal processing; real-time systems; time-frequency analysis; Doppler frequency estimate; Doppler signal model; car movements; first moment; instantaneous frequency; intrinsic noises; localized first moment; mean instantaneous frequency; multi-component Doppler signal; quadratic distribution; quadratic time-frequency distribution; quasi-stationarity assumption; radar sensor; real time measure; robust estimator; simulations; test signal; Doppler radar; Frequency estimation; Gaussian noise; Microwave sensors; Noise robustness; Noise shaping; Radar applications; Radar measurements; Sensor phenomena and characterization; Time frequency analysis;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Digital Signal Processing Proceedings, 1997. DSP 97., 1997 13th International Conference on
Conference_Location :
Santorini
Print_ISBN :
0-7803-4137-6
Type :
conf
DOI :
10.1109/ICDSP.1997.628467
Filename :
628467
Link To Document :
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