Acoustics Laboratory

Towards acoustically robust localization of speakers in a reverberant environment

Boaz Rafaely, Dorothea Kolossa, Yanir Maymon

Direction-of-arrival (DoA) estimation of a speaker in a room using microphone arrays is an important task in audio signal processing in general, and robot audition in particular. Recently, a novel DoA estimation method developed for spherical arrays presented accurate performance even under real-world conditions with strong reverberation. The method identifies time-frequency bins dominated by the direct signal from the source, and employs only these bins for DoA estimation. A recent extension allowed the use of shorter time frames by employing Gaussian mixture model based clustering to the DoA statistics. However, performance still degrades under challenging acoustical conditions, such as close to a reflecting surface. In this paper, a novel analysis is presented that provides insight into the acoustic significance of the individual Gaussians in the mixture, clearly showing the distinctiveness of the Gaussian corresponding to the direct path signal. The results presented here can be employed in the design of acoustically robust DoA estimation under strong reverberation.

Publication language English
Pages 96-100
Publication status Published - 10.04.2017

Keywords

Gaussian mixture modeling
Reverberation
Room acoustics
Speaker localization
Spherical microphone arrays

ASJC Scopus subject areas

Artificial Intelligence
Computer Networks and Communications
Acoustics and Ultrasonics
Instrumentation
Communication
Access to Document
10.1109/HSCMA.2017.7895569
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Link to publication in Scopus