Jarrett daniel p (18 Ergebnisse)

Sprache: Englisch
Verlag: Springer 2016
Serie: Springer Topics in Signal Processing, Buch 8 von 16. Buch 8 von 16 - Springer Topics in Signal Processing
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Theory and Applications of Spherical Microphone Array Processing (Springer Topics in Signal Processing, 9)
Jarrett, Daniel P.; Habets, Emanuël A.P.; Naylor, Patrick A.
Sprache: Englisch
Verlag: Springer 2018
Serie: Springer Topics in Signal Processing, Buch 8 von 16. Buch 8 von 16 - Springer Topics in Signal Processing
- Softcover
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Theory and Applications of Spherical Microphone Array Processing (Springer Topics in Signal Processing, 9)
Jarrett, Daniel P.; Habets, Emanuël A.P.; Naylor, Patrick A.
Sprache: Englisch
Verlag: Springer 2016
Serie: Springer Topics in Signal Processing, Buch 8 von 16. Buch 8 von 16 - Springer Topics in Signal Processing
- Hardcover
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Theory and Applications of Spherical Microphone Array Processing (Springer Topics in Signal Processing)
Jarrett, Daniel P.; Habets, Emanuël A.P.; Naylor, Patrick A.
Sprache: Englisch
Verlag: Springer 2018
Serie: Springer Topics in Signal Processing, Buch 8 von 16. Buch 8 von 16 - Springer Topics in Signal Processing
- Softcover
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Zustand: New. pp. 187.

Sprache: Englisch
Verlag: Springer 2018
Serie: Springer Topics in Signal Processing, Buch 8 von 16. Buch 8 von 16 - Springer Topics in Signal Processing
- Softcover
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Taschenbuch. Zustand: Neu. Theory and Applications of Spherical Microphone Array Processing | Daniel P. Jarrett (u. a.) | Taschenbuch | Springer Topics in Signal Processing | xvi | Englisch | 2018 | Springer | EAN 9783319825250 | Verantwortliche Person für die EU: Springer Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg, juerge…n[dot]hartmann[at]springer[dot]com | Anbieter: preigu.

Sprache: Englisch
Verlag: Springer 2016
Serie: Springer Topics in Signal Processing, Buch 8 von 16. Buch 8 von 16 - Springer Topics in Signal Processing
- Hardcover
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Buch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - This book presents the signal processing algorithms that have been developed to process the signals acquired by a spherical microphone array. Spherical microphone arrays can be used to capture the sound field in three dimensions and have received significan…t interest from researchers and audio engineers. Algorithms for spherical array processing are different to corresponding algorithms already known in the literature of linear and planar arrays because the spherical geometry can be exploited to great beneficial effect. The authors aim to advance the field of spherical array processing by helping those new to the field to study it efficiently and from a single source, as well as by offering a way for more experienced researchers and engineers to consolidate their understanding, adding either or both of breadth and depth. The level of the presentation corresponds to graduate studies at MSc and PhD level.This book begins with a presentation of some of the essential mathematical and physical theory relevant to spherical microphone arrays, and of an acoustic impulse response simulation method, which can be used to comprehensively evaluate spherical array processing algorithms in reverberant environments.The chapter on acoustic parameter estimation describes the way in which useful descriptions of acoustic scenes can be parameterized, and the signal processing algorithms that can be used to estimate the parameter values using spherical microphone arrays. Subsequent chapters exploit these parameters including in particular measures of direction-of-arrival and of diffuseness of a sound field. The array processing algorithms are then classified into two main classes, each described in a separate chapter. These are signal-dependent and signal-independent beamforming algorithms. Although signal-dependent beamforming algorithms are in theory able to provide better performance compared to the signal-independent algorithms, they are currently rarely used in practice. The main reason for this is that the statistical information required by these algorithms is difficult to estimate. In a subsequent chapter it is shown how the estimated acoustic parameters can be used in the design of signal-dependent beamforming algorithms. This final step closes, at least in part, the gap between theory and practice.

Theory and Applications of Spherical Microphone Array Processing (Springer Topics in Signal Processing, 9)
Jarrett, Daniel P., Habets, Emanuël A.P., Naylor, Patrick A.
Sprache: Englisch
Verlag: Springer 2018
Serie: Springer Topics in Signal Processing, Buch 8 von 16. Buch 8 von 16 - Springer Topics in Signal Processing
- Softcover
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Paperback. Zustand: New. New. book.

Sprache: Englisch
Verlag: Springer 2018
Serie: Springer Topics in Signal Processing, Buch 8 von 16. Buch 8 von 16 - Springer Topics in Signal Processing
- Softcover
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Zustand: new. Questo è un articolo print on demand.

Sprache: Englisch
Verlag: Springer 2016
Serie: Springer Topics in Signal Processing, Buch 8 von 16. Buch 8 von 16 - Springer Topics in Signal Processing
- Hardcover
- Print-on-Demand
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Sprache: Englisch
Verlag: Springer International Publishing Sep 2016 2016
Serie: Springer Topics in Signal Processing, Buch 8 von 16. Buch 8 von 16 - Springer Topics in Signal Processing
- Hardcover
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Buch. Zustand: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -This book presents the signal processing algorithms that have been developed to process the signals acquired by a spherical microphone array. Spherical microphone arrays can be used to capture the sound field in three dimensions and have rec…eived significant interest from researchers and audio engineers. Algorithms for spherical array processing are different to corresponding algorithms already known in the literature of linear and planar arrays because the spherical geometry can be exploited to great beneficial effect. The authors aim to advance the field of spherical array processing by helping those new to the field to study it efficiently and from a single source, as well as by offering a way for more experienced researchers and engineers to consolidate their understanding, adding either or both of breadth and depth. The level of the presentation corresponds to graduate studies at MSc and PhD level.This book begins with a presentation of some of the essential mathematical and physical theory relevant to spherical microphone arrays, and of an acoustic impulse response simulation method, which can be used to comprehensively evaluate spherical array processing algorithms in reverberant environments.The chapter on acoustic parameter estimation describes the way in which useful descriptions of acoustic scenes can be parameterized, and the signal processing algorithms that can be used to estimate the parameter values using spherical microphone arrays. Subsequent chapters exploit these parameters including in particular measures of direction-of-arrival and of diffuseness of a sound field. The array processing algorithms are then classified into two main classes, each described in a separate chapter. These are signal-dependent and signal-independent beamforming algorithms. Although signal-dependent beamforming algorithms are in theory able to provide better performance compared to the signal-independent algorithms, they are currently rarely used in practice. The main reason for this is that the statistical information required by these algorithms is difficult to estimate. In a subsequent chapter it is shown how the estimated acoustic parameters can be used in the design of signal-dependent beamforming algorithms. This final step closes, at least in part, the gap between theory and practice. 204 pp. Englisch.

Sprache: Englisch
Verlag: Springer International Publishing Jun 2018 2018
Serie: Springer Topics in Signal Processing, Buch 8 von 16. Buch 8 von 16 - Springer Topics in Signal Processing
- Softcover
- Print-on-Demand
Anbieter: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, DeutschlandBuchWeltWeit Ludwig Meier e.K.
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Taschenbuch. Zustand: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -This book presents the signal processing algorithms that have been developed to process the signals acquired by a spherical microphone array. Spherical microphone arrays can be used to capture the sound field in three dimensions and h…ave received significant interest from researchers and audio engineers. Algorithms for spherical array processing are different to corresponding algorithms already known in the literature of linear and planar arrays because the spherical geometry can be exploited to great beneficial effect. The authors aim to advance the field of spherical array processing by helping those new to the field to study it efficiently and from a single source, as well as by offering a way for more experienced researchers and engineers to consolidate their understanding, adding either or both of breadth and depth. The level of the presentation corresponds to graduate studies at MSc and PhD level.This book begins with a presentation of some of the essential mathematical and physical theory relevant to spherical microphone arrays, and of an acoustic impulse response simulation method, which can be used to comprehensively evaluate spherical array processing algorithms in reverberant environments.The chapter on acoustic parameter estimation describes the way in which useful descriptions of acoustic scenes can be parameterized, and the signal processing algorithms that can be used to estimate the parameter values using spherical microphone arrays. Subsequent chapters exploit these parameters including in particular measures of direction-of-arrival and of diffuseness of a sound field. The array processing algorithms are then classified into two main classes, each described in a separate chapter. These are signal-dependent and signal-independent beamforming algorithms. Although signal-dependent beamforming algorithms are in theory able to provide better performance compared to the signal-independent algorithms, they are currently rarely used in practice. The main reason for this is that the statistical information required by these algorithms is difficult to estimate. In a subsequent chapter it is shown how the estimated acoustic parameters can be used in the design of signal-dependent beamforming algorithms. This final step closes, at least in part, the gap between theory and practice. 204 pp. Englisch.

Sprache: Englisch
Verlag: Springer International Publishing 2018
Serie: Springer Topics in Signal Processing, Buch 8 von 16. Buch 8 von 16 - Springer Topics in Signal Processing
- Softcover
- Print-on-Demand
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Zustand: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Offers a single source explanation of spherical microphone array signal processingPresents a unified presentation of a wide body of material and the complete state of the artIncludes the essential mathematical and physi…cal theory.

Sprache: Englisch
Verlag: Springer International Publishing 2016
Serie: Springer Topics in Signal Processing, Buch 8 von 16. Buch 8 von 16 - Springer Topics in Signal Processing
- Hardcover
- Print-on-Demand
Anbieter: moluna, Greven, Deutschlandmoluna
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Gebunden. Zustand: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Offers a single source explanation of spherical microphone array signal processingPresents a unified presentation of a wide body of material and the complete state of the artIncludes the essential mathematical… and physical theory.

Theory and Applications of Spherical Microphone Array Processing (Springer Topics in Signal Processing)
Jarrett, Daniel P.; Habets, Emanuël A.P.; Naylor, Patrick A.
Sprache: Englisch
Verlag: Springer 2018
Serie: Springer Topics in Signal Processing, Buch 8 von 16. Buch 8 von 16 - Springer Topics in Signal Processing
- Softcover
- Print-on-Demand
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Zustand: New. Print on Demand pp. 187.

Theory and Applications of Spherical Microphone Array Processing (Springer Topics in Signal Processing)
Jarrett, Daniel P.; Habets, Emanuël A.P.; Naylor, Patrick A.
Sprache: Englisch
Verlag: Springer 2018
Serie: Springer Topics in Signal Processing, Buch 8 von 16. Buch 8 von 16 - Springer Topics in Signal Processing
- Softcover
- Print-on-Demand
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Zustand: New. PRINT ON DEMAND pp. 187.

Sprache: Englisch
Verlag: Springer, Springer Jun 2018 2018
Serie: Springer Topics in Signal Processing, Buch 8 von 16. Buch 8 von 16 - Springer Topics in Signal Processing
- Softcover
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Taschenbuch. Zustand: Neu. This item is printed on demand - Print on Demand Titel. Neuware -This book presents the signal processing algorithms that have been developed to process the signals acquired by a spherical microphone array. Spherical microphone arrays can be used to capture the sound field in three dimensions and have…received significant interest from researchers and audio engineers. Algorithms for spherical array processing are different to corresponding algorithms already known in the literature of linear and planar arrays because the spherical geometry can be exploited to great beneficial effect.The authors aim to advance the field of spherical array processing by helping those new to the field to study it efficiently and from a single source, as well as by offering a way for more experienced researchers and engineers to consolidate their understanding, adding either or both of breadth and depth. The level of the presentation corresponds to graduate studies at MSc and PhD level.This book begins with a presentation of some of the essential mathematical and physical theory relevant to spherical microphone arrays, and of an acoustic impulse response simulation method, which can be used to comprehensively evaluate spherical array processing algorithms in reverberant environments.The chapter on acoustic parameter estimation describes the way in which useful descriptions of acoustic scenes can be parameterized, and the signal processing algorithms that can be used to estimate the parameter values using spherical microphone arrays. Subsequent chapters exploit these parameters including in particular measures of direction-of-arrival and of diffuseness of a sound field.The array processing algorithms are then classified into two main classes, each described in a separate chapter. These are signal-dependent and signal-independent beamforming algorithms. Although signal-dependent beamforming algorithms are in theory able to provide better performance compared to the signal-independent algorithms, they are currently rarely used in practice. The main reason for this is that the statistical information required by these algorithms is difficult to estimate. In a subsequent chapter it is shown how the estimated acoustic parameters can be used in the design of signal-dependent beamforming algorithms. This final step closes, at least in part, the gap between theory and practice.Springer-Verlag KG, Sachsenplatz 4-6, 1201 Wien 204 pp. Englisch.

Sprache: Englisch
Verlag: Springer, Springer Sep 2016 2016
Serie: Springer Topics in Signal Processing, Buch 8 von 16. Buch 8 von 16 - Springer Topics in Signal Processing
- Hardcover
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Buch. Zustand: Neu. This item is printed on demand - Print on Demand Titel. Neuware -This book presents the signal processing algorithms that have been developed to process the signals acquired by a spherical microphone array. Spherical microphone arrays can be used to capture the sound field in three dimensions and have receive…d significant interest from researchers and audio engineers. Algorithms for spherical array processing are different to corresponding algorithms already known in the literature of linear and planar arrays because the spherical geometry can be exploited to great beneficial effect.The authors aim to advance the field of spherical array processing by helping those new to the field to study it efficiently and from a single source, as well as by offering a way for more experienced researchers and engineers to consolidate their understanding, adding either or both of breadth and depth. The level of the presentation corresponds to graduate studies at MSc and PhD level.This book begins with a presentation of some of the essential mathematical and physical theory relevant to spherical microphone arrays, and of an acoustic impulse response simulation method, which can be used to comprehensively evaluate spherical array processing algorithms in reverberant environments.The chapter on acoustic parameter estimation describes the way in which useful descriptions of acoustic scenes can be parameterized, and the signal processing algorithms that can be used to estimate the parameter values using spherical microphone arrays. Subsequent chapters exploit these parameters including in particular measures of direction-of-arrival and of diffuseness of a sound field.The array processing algorithms are then classified into two main classes, each described in a separate chapter. These are signal-dependent and signal-independent beamforming algorithms. Although signal-dependent beamforming algorithms are in theory able to provide better performance compared to the signal-independent algorithms, they are currently rarely used in practice. The main reason for this is that the statistical information required by these algorithms is difficult to estimate. In a subsequent chapter it is shown how the estimated acoustic parameters can be used in the design of signal-dependent beamforming algorithms. This final step closes, at least in part, the gap between theory and practice.Springer-Verlag KG, Sachsenplatz 4-6, 1201 Wien 204 pp. Englisch.

Sprache: Englisch
Verlag: Humana 2018
Serie: Springer Topics in Signal Processing, Buch 8 von 16. Buch 8 von 16 - Springer Topics in Signal Processing
- Softcover
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Taschenbuch. Zustand: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - This book presents the signal processing algorithms that have been developed to process the signals acquired by a spherical microphone array. Spherical microphone arrays can be used to capture the sound field in three dimensions and have r…eceived significant interest from researchers and audio engineers. Algorithms for spherical array processing are different to corresponding algorithms already known in the literature of linear and planar arrays because the spherical geometry can be exploited to great beneficial effect. The authors aim to advance the field of spherical array processing by helping those new to the field to study it efficiently and from a single source, as well as by offering a way for more experienced researchers and engineers to consolidate their understanding, adding either or both of breadth and depth. The level of the presentation corresponds to graduate studies at MSc and PhD level.This book begins with a presentation of some of the essential mathematical and physical theory relevant to spherical microphone arrays, and of an acoustic impulse response simulation method, which can be used to comprehensively evaluate spherical array processing algorithms in reverberant environments.The chapter on acoustic parameter estimation describes the way in which useful descriptions of acoustic scenes can be parameterized, and the signal processing algorithms that can be used to estimate the parameter values using spherical microphone arrays. Subsequent chapters exploit these parameters including in particular measures of direction-of-arrival and of diffuseness of a sound field. The array processing algorithms are then classified into two main classes, each described in a separate chapter. These are signal-dependent and signal-independent beamforming algorithms. Although signal-dependent beamforming algorithms are in theory able to provide better performance compared to the signal-independent algorithms, they are currently rarely used in practice. The main reason for this is that the statistical information required by these algorithms is difficult to estimate. In a subsequent chapter it is shown how the estimated acoustic parameters can be used in the design of signal-dependent beamforming algorithms. This final step closes, at least in part, the gap between theory and practice.