Exploiting the Self-Steering Capability of Blind Source Separation to Localize Two or More Sound Sources in Adverse Environments

Lombard A, Rosenkranz T, Buchner H, Kellermann W (2008)


Publication Language: English

Publication Type: Conference contribution

Publication year: 2008

Publisher: VDE

Conference Proceedings Title: Proc. ITG Conference on Speech Communication

Event location: Aachen DE

ISBN: 978-3-8007-3120-6

URI: http://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=5759960

Abstract

Blind Source Separation (BSS) algorithms have often been interpreted as a set of blind adaptive beamformers. Although this interpretation does not entirely hold under realistic conditions, it gives some useful insights on the self-steering capacity of BSS techniques. Actually, while accurate source location information is usually necessary to steer a beamformer, BSS offers the possibility to recover the original source signals from a reverberant sound mixture without this prior knowledge. Intuitively, this self-steering capacity should therefore imply that the BSS demixing filters contain some useful information on the location of each source. In this paper, we discuss the relations between BSS and beamforming techniques, based on the general form of the ideal separation solution. Two possible ways to extract the location information from the BSS demixing system are then presented. Experiments using a broadband BSS algorithm based on the TRINICON framework demonstrate the efficiency of the proposed methods in a highly reverberant and noisy environment, for up to six simultaneously active speech sources.

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How to cite

APA:

Lombard, A., Rosenkranz, T., Buchner, H., & Kellermann, W. (2008). Exploiting the Self-Steering Capability of Blind Source Separation to Localize Two or More Sound Sources in Adverse Environments. In Proc. ITG Conference on Speech Communication. Aachen, DE: VDE.

MLA:

Lombard, Anthony, et al. "Exploiting the Self-Steering Capability of Blind Source Separation to Localize Two or More Sound Sources in Adverse Environments." Proceedings of the 8th ITG Conference on Speech Communication, Aachen VDE, 2008.

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