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Blind source separation of ship-radiated noise based on generalized Gaussian model
作者姓名:Kong  Wei  &  Yang  Bin
作者单位:Information Engineering Coll. of Shanghai Maritime Univ.,Shanghai 200135,Chi na
摘    要:1 .INTRODUCTIONBlind source separation (BSS) in signal processinghas received considerable attention from many re-searchers .It is a fundamental problem in signalprocessing with a large number of extremely di-verse applications such as multi-user communica-tions ,speech signal processing, array processingand medical signal processing including ECG,MEGand EEG. The general goal of blind sourceseparation (BSS) is to separate the statistically in-dependent , unknown source signals from t…

收稿时间:15 March 2005. 

Blind source separation of ship-radiated noise based on generalized Gaussian model
Kong Wei & Yang Bin.Blind source separation of ship-radiated noise based on generalized Gaussian model[J].Journal of Systems Engineering and Electronics,2006,17(2):321-325.
Authors:Kong Wei  Yang Bin
Institution:Information Engineering Coll. of Shanghai Maritime Univ. , Shanghai 200135, China
Abstract:When the distribution of the sources cannot be e stimated accurately, the ICA algorithms failed to separate the mixtures blindly. The generalized Gaussian model (GGM) is presented in ICA algorithm since it can model non-Gaussian statistical structure of different source signals easily. B y inferring only one parameter, a wide class of statistical distributions can be characterized. By using maximum likelihood (ML) approach and natural gradient d escent, the learning rules of blind source separation (BSS) based on GGM are pre sented. The experiment of the ship-radiated noise demonstrates that the GGM can model the distributions of the ship-radiated noise and sea noise efficiently, and the learning rules based on GGM gives more successful separation results aft er comparing it with several conventional methods such as high order cumulants a nd Gaussian mixture density function.
Keywords:blind source separation (BSS)  independent component analysis (ICA)  generalized Gaussian model (GGM)  maximum likelihood (ML)
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