DocumentCode :
990059
Title :
Geometrically Constrained Independent Component Analysis
Author :
Knaak, Mirko ; Araki, Shoko ; Makino, Shoji
Author_Institution :
Meas. Technol. Lab., Technische Univ. Berlin
Volume :
15
Issue :
2
fYear :
2007
Firstpage :
715
Lastpage :
726
Abstract :
Acoustical signals are often corrupted by other speeches, sources, and background noise. This makes it necessary to use some form of preprocessing so that signal processing systems such as a speech recognizer or machine diagnosis can be effectively employed. In this contribution, we introduce and evaluate a new algorithm that uses independent component analysis (ICA) with a geometrical constraint [constrained ICA (CICA)]. It is based on the fundamental similarity between an adaptive beamformer and blind source separation with ICA, and does not suffer the permutation problem of ICA-algorithms. Unlike conventional ICA algorithms, CICA needs prior knowledge about the rough direction of the target signal. However, it is more robust against an erroneous estimation of the target direction than adaptive beamformers: CICA converges to the right solution as long as its look direction is closer to the target signal than to the jammer signal. A high degree of robustness is very important since the geometrical prior of an adaptive beamformer is always roughly estimated in a reverberant environment, even when the look direction is precise. The effectiveness and robustness of the new algorithms is proven theoretically, and shown experimentally for three sources and three microphones with several sets of real-world data
Keywords :
acoustic signal processing; array signal processing; blind source separation; geometry; independent component analysis; jamming; acoustical signals; adaptive beamformer; background noise; blind source separation; geometrically constrained independent component analysis; jammer signal; machine diagnosis; microphones; signal processing systems; speech recognizer; target direction; Acoustic signal processing; Adaptive signal processing; Background noise; Blind source separation; Independent component analysis; Robustness; Signal processing algorithms; Speech enhancement; Speech processing; Speech recognition; Blind source separation (BSS); independent component analysis (ICA); machine diagnosis; minimum variance beamforming; signal enhancement; statistical signal processing;
fLanguage :
English
Journal_Title :
Audio, Speech, and Language Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1558-7916
Type :
jour
DOI :
10.1109/TASL.2006.876730
Filename :
4067041
Link To Document :
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