Title :
A Blind Source Separation of instantaneous acoustic mixtures using Natural Gradient Method
Author :
Sandiko, C.M. ; Magsino, Elmer R.
Author_Institution :
Electron. & Commun. Eng. Dept., First Asia Inst. of Technol. & Humanities, Tanauan, Philippines
Abstract :
A variety of applications concerning communication signal processing involves recovering unobserved signals or “sources” from several observed mixtures, and “cocktail party effect” is a good paradigm related to this process. Given a set of linearly superimposed acoustic signals without knowledge about the sources makes Blind Source Separation (BSS) a very suitable scheme. A more popular approach of BSS, Independent Component Analysis, has been exploited which basically senses the statistical independence of the source signal estimates to achieve separation. A set of interfering signals present in a typical acoustic environment has been instantaneously combined with a pre-determined mixing matrix. A great weight has been given on an excellent rendition of the Infomax technique of Independent Component Analysis (ICA), called the Natural Gradient Method, to employ a cost function that would yield an optimized de-mixing matrix, producing fairly estimated source signals. By varying the learning rate and the score function, a robust performance of the Natural Gradient has been exhibited, maximizing the separation quality, stability and convergence speed.
Keywords :
acoustic signal processing; blind source separation; gradient methods; independent component analysis; matrix algebra; BSS; ICA; Infomax technique; blind source separation; cocktail party effect; communication signal processing; convergence speed; cost function; independent component analysis; instantaneous acoustic mixtures; linearly superimposed acoustic signals; natural gradient method; optimized demixing matrix; predetermined mixing matrix; separation quality maximization; source signal estimation; statistical independence; blind source separation; cocktail party; natural gradient method;
Conference_Titel :
Control System, Computing and Engineering (ICCSCE), 2012 IEEE International Conference on
Conference_Location :
Penang
Print_ISBN :
978-1-4673-3142-5
DOI :
10.1109/ICCSCE.2012.6487128