MTU Cork Library Catalogue

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Advanced signal proocessing and digital noise reduction / Saeed V. Vaseghi.

By: Vaseghi, Saeed V.
Material type: materialTypeLabelBookPublisher: New York : John Wiley, 1996Description: xvii, 397 p. : ill ; 25 cm + hbk.ISBN: 0471958751 (m) (Wiley); 3519064510 (v) (Teubner).Subject(s): Signal processing | Electronic noise | Digital filters (Mathematics)DDC classification: 621.3822
Contents:
Introduction -- Stochastic processes -- Bayesian estimation and classification -- Hidden Markov models -- Wiener filters -- Kalman and adaptive least squared error filters -- Linear prediction models -- Power spectrum estimation -- Spectral subtraction -- Interpolation -- Impulsive noise -- Transient noise -- Echo cancellation -- Blind deconvolution and channel equalisation.
Holdings
Item type Current library Call number Copy number Status Date due Barcode Item holds
General Lending MTU Bishopstown Library Lending 621.3822 (Browse shelf(Opens below)) 1 Available 00070137
Total holds: 0

Enhanced descriptions from Syndetics:

Noise cancellation is particularly important in the new mobile communications field, with respect to background noise and acoustic interference in moving vehicles. This comprehensive text develops a coherent and structured presentation of a broad range of the theory and application of statistical signal processing, with emphasis on digital noise reduction algorithms. Other applications covered are spectral estimation, channel equalisation, speech coding over noisy channels, speech recognition in adverse environments, active noise control, echo cancellation, restoration of lost filters, and adaptive notch filters.

Includes bibliographical references and index.

Introduction -- Stochastic processes -- Bayesian estimation and classification -- Hidden Markov models -- Wiener filters -- Kalman and adaptive least squared error filters -- Linear prediction models -- Power spectrum estimation -- Spectral subtraction -- Interpolation -- Impulsive noise -- Transient noise -- Echo cancellation -- Blind deconvolution and channel equalisation.

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