DocumentCode :
3547790
Title :
Blind extraction of a dominant source from mixtures of many sources using ICA and time-frequency masking
Author :
Sawada, Hiroshi ; Araki, Shoko ; Mukai, Ryo ; Makino, Shoji
Author_Institution :
NTr Commun. Sci. Labs., NTT Corp., Kyoto, Japan
fYear :
2005
fDate :
23-26 May 2005
Firstpage :
5882
Abstract :
The paper presents a method for enhancing a target source of interest and suppressing other interference sources. The target source is assumed to be close to sensors, to have dominant power at these sensors, and to have non-Gaussianity. The enhancement is performed blindly, i.e., without knowing the total number of sources or information about each source, such as position and active time. We consider a general case where the number of sources is larger than the number of sensors. We employ a two-stage process where independent component analysis (ICA) is first employed in each frequency bin and time-frequency masking is then used to improve the performance further. We propose a new sophisticated method for selecting the target source frequency components, and also a new criterion for specifying time-frequency masks. Experimental results for simulated cocktail party situations in a room (reverberation time was 130 ms) are presented to show the effectiveness and characteristics of the proposed method.
Keywords :
audio signal processing; blind source separation; independent component analysis; interference suppression; time-frequency analysis; 130 ms; ICA; audio applications; blind dominant source extraction; blind source extraction; blind source separation; cocktail party situations; frequency bin; independent component analysis; interference source suppression; interference suppression; speech enhancement; target source enhancement; target source frequency components; time-frequency masking; Blind source separation; Brain; Independent component analysis; Interference suppression; Laboratories; Reverberation; Sensor phenomena and characterization; Source separation; Speech; Time frequency analysis;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Circuits and Systems, 2005. ISCAS 2005. IEEE International Symposium on
Print_ISBN :
0-7803-8834-8
Type :
conf
DOI :
10.1109/ISCAS.2005.1465977
Filename :
1465977
Link To Document :
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