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The aim of the book is to give an accessible introduction of
mathematical models and signal processing methods in speech and
hearing sciences for senior undergraduate and beginning graduate
students with basic knowledge of linear algebra, differential
equations, numerical analysis, and probability. Speech and hearing
sciences are fundamental to numerous technological advances of the
digital world in the past decade, from music compression in MP3 to
digital hearing aids, from network based voice enabled services to
speech interaction with mobile phones. Mathematics and computation
are intimately related to these leaps and bounds. On the other
hand, speech and hearing are strongly interdisciplinary areas where
dissimilar scientific and engineering publications and approaches
often coexist and make it difficult for newcomers to enter.
The aim of the book is to give an accessible introduction of
mathematical models and signal processing methods in speech and
hearing sciences for senior undergraduate and beginning graduate
students with basic knowledge of linear algebra, differential
equations, numerical analysis, and probability. Speech and hearing
sciences are fundamental to numerous technological advances of the
digital world in the past decade, from music compression in MP3 to
digital hearing aids, from network based voice enabled services to
speech interaction with mobile phones. Mathematics and computation
are intimately related to these leaps and bounds. On the other
hand, speech and hearing are strongly interdisciplinary areas where
dissimilar scientific and engineering publications and approaches
often coexist and make it difficult for newcomers to enter.
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