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Ambisonics = a practical 3D audio th...
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Zotter, Franz.
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Ambisonics = a practical 3D audio theory for recording, studio production, sound reinforcement, and virtual reality /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Ambisonics/ by Franz Zotter, Matthias Frank.
其他題名:
a practical 3D audio theory for recording, studio production, sound reinforcement, and virtual reality /
作者:
Zotter, Franz.
其他作者:
Frank, Matthias.
出版者:
Cham :Springer International Publishing : : 2019.,
面頁冊數:
xiv, 210 p. :ill., digital ;24 cm.
內容註:
XY, MS, and First-order Ambisonics -- Auditory events of multi-loudspeaker playback -- Amplitude panning using vector bases -- Ambisonic amplitude panning in higher orders -- Signal flow and effects in Ambisonic productions -- Higher-order Ambisonic microphones and the wave equation (linear, lossless) -- Compact spherical loudspeaker arrays -- 5D room impulse responses + virtual IKO.
Contained By:
Springer eBooks
標題:
Sound - Recording and reproducing -
電子資源:
https://doi.org/10.1007/978-3-030-17207-7
ISBN:
9783030172077
Ambisonics = a practical 3D audio theory for recording, studio production, sound reinforcement, and virtual reality /
Zotter, Franz.
Ambisonics
a practical 3D audio theory for recording, studio production, sound reinforcement, and virtual reality /[electronic resource] :by Franz Zotter, Matthias Frank. - Cham :Springer International Publishing :2019. - xiv, 210 p. :ill., digital ;24 cm. - Springer topics in signal processing,v.191866-2609 ;. - Springer topics in signal processing ;v.19..
XY, MS, and First-order Ambisonics -- Auditory events of multi-loudspeaker playback -- Amplitude panning using vector bases -- Ambisonic amplitude panning in higher orders -- Signal flow and effects in Ambisonic productions -- Higher-order Ambisonic microphones and the wave equation (linear, lossless) -- Compact spherical loudspeaker arrays -- 5D room impulse responses + virtual IKO.
Open access.
This open access book provides a concise explanation of the fundamentals and background of the surround sound recording and playback technology Ambisonics. It equips readers with the psychoacoustical, signal processing, acoustical, and mathematical knowledge needed to understand the inner workings of modern processing utilities, special equipment for recording, manipulation, and reproduction in the higher-order Ambisonic format. The book comes with various practical examples based on free software tools and open scientific data for reproducible research. The book's introductory section offers a perspective on Ambisonics spanning from the origins of coincident recordings in the 1930s to the Ambisonic concepts of the 1970s, as well as classical ways of applying Ambisonics in first-order coincident sound scene recording and reproduction that have been practiced since the 1980s. As, from time to time, the underlying mathematics become quite involved, but should be comprehensive without sacrificing readability, the book includes an extensive mathematical appendix. The book offers readers a deeper understanding of Ambisonic technologies, and will especially benefit scientists, audio-system and audio-recording engineers. In the advanced sections of the book, fundamentals and modern techniques as higher-order Ambisonic decoding, 3D audio effects, and higher-order recording are explained. Those techniques are shown to be suitable to supply audience areas ranging from studio-sized to hundreds of listeners, or headphone-based playback, regardless whether it is live, interactive, or studio-produced 3D audio material.
ISBN: 9783030172077
Standard No.: 10.1007/978-3-030-17207-7doiSubjects--Topical Terms:
576951
Sound
--Recording and reproducing
LC Class. No.: TK7881.4 / .Z688 2019
Dewey Class. No.: 621.3893
Ambisonics = a practical 3D audio theory for recording, studio production, sound reinforcement, and virtual reality /
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This open access book provides a concise explanation of the fundamentals and background of the surround sound recording and playback technology Ambisonics. It equips readers with the psychoacoustical, signal processing, acoustical, and mathematical knowledge needed to understand the inner workings of modern processing utilities, special equipment for recording, manipulation, and reproduction in the higher-order Ambisonic format. The book comes with various practical examples based on free software tools and open scientific data for reproducible research. The book's introductory section offers a perspective on Ambisonics spanning from the origins of coincident recordings in the 1930s to the Ambisonic concepts of the 1970s, as well as classical ways of applying Ambisonics in first-order coincident sound scene recording and reproduction that have been practiced since the 1980s. As, from time to time, the underlying mathematics become quite involved, but should be comprehensive without sacrificing readability, the book includes an extensive mathematical appendix. The book offers readers a deeper understanding of Ambisonic technologies, and will especially benefit scientists, audio-system and audio-recording engineers. In the advanced sections of the book, fundamentals and modern techniques as higher-order Ambisonic decoding, 3D audio effects, and higher-order recording are explained. Those techniques are shown to be suitable to supply audience areas ranging from studio-sized to hundreds of listeners, or headphone-based playback, regardless whether it is live, interactive, or studio-produced 3D audio material.
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