DocumentCode
3475237
Title
Mixing matrix estimation based on single-source point identification and improved clustering method
Author
Zhu, Dongyan ; Ma, Xiaohong
Author_Institution
Inf. & Commun. Eng. Inst., Dalian Univ. of Technol., Dalian, China
fYear
2011
fDate
27-30 Sept. 2011
Firstpage
282
Lastpage
286
Abstract
Mixing matrix is the key issue in the under-determined blind source separation with sparse representation. The performance of traditional clustering method degrades when the sources do not satisfy W-disjoint orthogonal condition. This paper puts forward an effective method, which sets less condition on the sparseness of the sources, to improve the estimation of the mixing matrix. Firstly, we detect the points in the time-frequency domain of the observations that only single source contributes. Samples at these points are more reliable for the mixing matrix estimation. Secondly, the number of sources, which often needs to be known a priori, is estimated through the characteristics of the observed signals. Finally, an improved initial cluster center selection method is presented for the defects of the traditional K-means cluster algorithm. The numerical performance of the proposed methods are provided highlighting their performance gain compared to existing ones, especially in the cases where the number of sources is unknown and the sources are relatively less sparse.
Keywords
blind source separation; sparse matrices; time-frequency analysis; blind source separation; cluster center selection method; improved clustering method; matrix estimation; single-source point identification; sparse representation; time-frequency domain; Clustering algorithms; Sparse matrices; blind source separation; initial cluster center selection; single-source detection; sparse component analysis;
fLanguage
English
Publisher
ieee
Conference_Titel
Awareness Science and Technology (iCAST), 2011 3rd International Conference on
Conference_Location
Dalian
Print_ISBN
978-1-4577-0887-9
Type
conf
DOI
10.1109/ICAwST.2011.6163156
Filename
6163156
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