DocumentCode
70996
Title
Binaural Signal Processing Motivated Generalized Analytic Signal Construction and AM-FM Demodulation
Author
Venkitaraman, Arun ; Seelamantula, Chandra Sekhar
Author_Institution
Dept. of Electr. Eng., Indian Inst. of Sci., Bangalore, India
Volume
22
Issue
6
fYear
2014
fDate
Jun-14
Firstpage
1023
Lastpage
1036
Abstract
Binaural hearing studies show that the auditory system uses the phase-difference information in the auditory stimuli for localization of a sound source. Motivated by this finding, we present a method for demodulation of amplitude-modulated-frequency-modulated (AM-FM) signals using a signal and its arbitrary phase-shifted version. The demodulation is achieved using two allpass filters, whose impulse responses are related through the fractional Hilbert transform (FrHT). The allpass filters are obtained by cosine-modulation of a zero-phase flat-top prototype halfband lowpass filter. The outputs of the filters are combined to construct an analytic signal (AS) from which the AM and FM are estimated. We show that, under certain assumptions on the signal and the filter structures, the AM and FM can be obtained exactly. The AM-FM calculations are based on the quasi-eigenfunction approximation. We then extend the concept to the demodulation of multicomponent signals using uniform and non-uniform cosine-modulated filterbank (FB) structures consisting of flat bandpass filters, including the uniform cosine-modulated, equivalent rectangular bandwidth (ERB), and constant-Q filterbanks. We validate the theoretical calculations by considering application on synthesized AM-FM signals and compare the performance in presence of noise with three other multiband demodulation techniques, namely, the Teager-energy-based approach, the Gabor´s AS approach, and the linear transduction filter approach. We also show demodulation results for real signals.
Keywords
Hilbert transforms; amplitude modulation; approximation theory; audio signal processing; band-pass filters; frequency modulation; low-pass filters; transient response; AM-FM demodulation; Teager-energy-based approach; amplitude-modulated-frequency-modulated signals; binaural signal processing; cosine-modulation; flat bandpass filters; fractional Hilbert transform; generalized analytic signal construction; impulse response; linear transduction filter approach; multicomponent signal demodulation; nonuniform cosine-modulated filterbank structures; quasieigenfunction approximation; sound source localization; uniform cosine-modulated filterbank structures; zero-phase flat-top prototype half-band low-pass filter; Approximation methods; Demodulation; Ear; Frequency modulation; Passband; Speech; Transforms; Binaural processing; cosine-modulated filterbank; demodulation; equivalent rectangular bandwidth; fractional Hilbert transform; quasi-eigenfunction approximation;
fLanguage
English
Journal_Title
Audio, Speech, and Language Processing, IEEE/ACM Transactions on
Publisher
ieee
ISSN
2329-9290
Type
jour
DOI
10.1109/TASLP.2014.2316376
Filename
6785980
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