Title :
Generalized State Coherence Transform for Multidimensional TDOA Estimation of Multiple Sources
Author :
Nesta, Francesco ; Omologo, Maurizio
Author_Institution :
Fondazione Bruno Kessler-IRST, Povo di Trento, Italy
Abstract :
According to the physical meaning of the frequency-domain blind source separation (FD-BSS), each mixing matrix estimated by independent component analysis (ICA) contains information on the physical acoustic propagation related to each source and then can be used for localization purposes. In this paper, we analyze the Generalized State Coherence Transform (GSCT) which is a non-linear transform of the space represented by the whole demixing matrices. The transform enables an accurate estimation of the propagation time-delay of multiple sources in multiple dimensions. Furthermore, it is shown that with appropriate nonlinearities and a statistical model for the reverberation, GSCT can be considered an approximated kernel density estimator of the acoustic propagation time-delay. Experimental results confirm the good properties of the transform and its effectiveness in addressing multiple source TDOA detection (e.g., 2-D TDOA estimation of several sources with only three microphones).
Keywords :
acoustic signal processing; acoustic wave propagation; approximation theory; blind source separation; delays; frequency-domain analysis; independent component analysis; matrix algebra; multidimensional signal processing; reverberation; statistical analysis; time-of-arrival estimation; FD-BSS; GSCT; ICA; approximated kernel density estimator; demixing matrices; frequency-domain blind source separation; generalized state coherence transform; independent component analysis; mixing matrix; multidimensional TDOA estimation; multiple source TDOA detection; nonlinear transform; physical acoustic propagation; propagation time-delay estimation; reverberation; statistical model; time difference of arrival estimation; Acoustic propagation; Coherence; Estimation; Microphones; Time frequency analysis; Transforms; Blind source separation (BSS); independent component analysis (ICA); multi-source localization; multidimensional localization; permutation problem; underdetermined source separation;
Journal_Title :
Audio, Speech, and Language Processing, IEEE Transactions on
DOI :
10.1109/TASL.2011.2160168