Title :
Blind separation of underdetermined mixtures with additive white and pink noises
Author :
Alshabrawy, Ossama S. ; Hassanien, Aboul Ella ; Awad, W.A. ; Salama, A.A.
Author_Institution :
Dept. of Math. & Comput. Sci., Damietta Univ., Damietta, Egypt
Abstract :
This paper presents an approach for underdetermined blind source separation in the case of additive Gaussian white noise and pink noise. Likewise, the proposed approach is applicable in the case of separating I + 3 sources from I mixtures with additive two kinds of noises. This situation is more challenging and suitable to practical real world problems. Moreover, unlike to some conventional approaches, the sparsity conditions are not imposed. Firstly, the mixing matrix is estimated based on an algorithm that combines short time Fourier transform and rough-fuzzy clustering. Then, the mixed signals are normalized and the source signals are recovered using modified Gradient descent Local Hierarchical Alternating Least Squares Algorithm exploiting the mixing matrix obtained from the previous step as an input and initialized by multiplicative algorithm for matrix factorization based on alpha divergence. The experiments and simulation results show that the proposed approach can separate I + 3 source signals from I mixed signals, and it has superior evaluation performance compared to some conventional approaches.
Keywords :
AWGN; Fourier transforms; blind source separation; least squares approximations; matrix algebra; Fourier transform; additive Gaussian white noise; alpha divergence; blind source separation; gradient descent local hierarchical alternating least squares algorithm; matrix factorization; mixing matrix; multiplicative algorithm; pink noise; rough-fuzzy clustering; Convergence; Noise; Hierarchical Alternating Least Squares; Rough Fuzzy clustering; Short Time Fourier transform; Underdetermined Blind Source Separation;
Conference_Titel :
Hybrid Intelligent Systems (HIS), 2013 13th International Conference on
Conference_Location :
Gammarth
Print_ISBN :
978-1-4799-2438-7
DOI :
10.1109/HIS.2013.6920450