DocumentCode :
786650
Title :
Adaptive instantaneous frequency estimation of multicomponent FM signals using quadratic time-frequency distributions
Author :
Hussain, Zahir M. ; Boashash, Boualem
Author_Institution :
Sch. of Electr. & Comput. Eng., R. Melbourne Inst. of Technol., Vic., Australia
Volume :
50
Issue :
8
fYear :
2002
fDate :
8/1/2002 12:00:00 AM
Firstpage :
1866
Lastpage :
1876
Abstract :
An adaptive approach to the estimation of the instantaneous frequency (IF) of nonstationary mono- and multicomponent FM signals with additive Gaussian noise is presented. The IF estimation is based on the fact that quadratic time-frequency distributions (TFDs) have maxima around the IF law of the signal. It is shown that the bias and variance of the IF estimate are functions of the lag window length. If there is a bias-variance tradeoff, then the optimal window length for this tradeoff depends on the unknown IF law. Hence, an adaptive algorithm with a time-varying and data-driven window length is needed. The adaptive algorithm can utilize any quadratic TFD that satisfies the following three conditions: First, the IF estimation variance given by the chosen distribution should be a continuously decreasing function of the window length, whereas the bias should be continuously increasing so that the algorithm will converge at the optimal window length for the bias-variance tradeoff, second, the time-lag kernel filter of the chosen distribution should not perform narrowband filtering in the lag direction in order to not interfere with the adaptive window in that direction; third, the distribution should perform effective cross-terms reduction while keeping high resolution in order to be efficient for multicomponent signals. A quadratic distribution with high resolution, effective cross-terms reduction and no lag filtering is proposed. The algorithm estimates multiple IF laws by using a tracking algorithm for the signal components and utilizing the property that the proposed distribution enables nonparametric component amplitude estimation. An extension of the proposed TFD consisting of the use of time-only kernels for adaptive IF estimation is also proposed
Keywords :
Gaussian noise; adaptive estimation; amplitude estimation; filtering theory; frequency estimation; frequency modulation; statistical analysis; time-frequency analysis; IF estimation variance; Terms-Amplitude estimation; adaptive IF estimation; adaptive algorithm; adaptive instantaneous frequency estimation; additive Gaussian noise; bias; bias time-lag kernel filter; cross-terms reduction; distribution; lag window length; multicomponent FM signals; narrowband filtering; nonparametric component amplitude estimation; nonstationary FM signals; optimal window length; quadratic TFD; quadratic time-frequency distributions; time-lag kernel filter; time-only kernels; time-varying window length; variance; Adaptive algorithm; Adaptive filters; Additive noise; Amplitude estimation; Filtering; Frequency estimation; Gaussian noise; Kernel; Signal resolution; Time frequency analysis;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/TSP.2002.800406
Filename :
1018780
Link To Document :
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