Acoustics Laboratory

Spherical array processing with binaural sound reproduction for improved speech intelligibility

Noam R. Shabtai, Boaz Rafaely

In telecommunication applications, interfering sounds and reverberation can have a detrimental effect on speech intelligibility. For this reason, microphone arrays have been recently employed in telecommunication systems for natural environments. Currently applied array processing methods typically aim to produce array output which is optimal on signal-based measures e.g. signal-to-noise ratio (SNR). These measures may be particularly appropriate when the receiver is a machine. However, in order to enhance speech intelligibility when the receiver is another human, it may be desired to trigger spatial hearing capabilities of the human auditory system, such as the cocktail party effect. In particular, spatial-release from masking has been investigated. This work presents a spherical array signal processing framework in which array output is generated binaurally using the head-related transfer function. In this framework both target direction is enhanced and spatial information of all sources are perceived by the listener. The performance of the proposed binaural beamformer is compared to the performance of a non-binaural maximum directivity beamformer based on a spatial reproduction listening tests. The average percentage correct decision is calculated over 5 subjects, and is shown to be higher when the binaural beamformer is used for every tested SNR.

Publication language English
Journal Proceedings of Meetings on Acoustics
Volume 19
Publication status Published - 19.06.2013
055050

ASJC Scopus subject areas

Acoustics and Ultrasonics
Access to Document
10.1121/1.4799010
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Link to publication in Scopus