Fr. 179.00

Head-Related Transfer Function and Acoustic Virtual Reality

English · Hardback

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Description

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This book covers all aspects of head-related transfer function (HRTF), from the fundamentals through to the latest applications, such as 3D sound systems. An introductory chapter defines HRTF, describes the coordinate system used in the book, and presents the most recent research achievements in the field. HRTF and sound localization in the horizontal and median planes are then explained, followed by discussion of individual differences in HRTF, solutions to this individuality (personalization of HRTF), and methods of sound image control for an arbitrary 3D direction, encompassing both classic theory and state of the art data. The relations between HRTF and sound image distance and between HRTF and speech intelligibility are fully explored, and measurement and signal processing methods for HRTF are examined in depth. Here, supplementary material is provided to enable readers to measure and analyze HRTF by themselves. In addition, some typical HRTF databases are compared. The final two chapters are devoted to the principles and applications of acoustic virtual reality. This clearly written book will be ideal for all who wish to learn about HRTF and how to use it in their research. 

List of contents

FM         Preface
1              Introduction
2              HRTF and sound localization in the horizontal plane
3              HRTFs and sound localization in the median plane
4              Individuality of HRTFs
5              HRTF and sound image control for an arbitrary three-dimensional direction
6              Directional band and spectral cue
7              Distance perception and HRTF
8              Speech intelligibility and the HRTF
9              Measurement method for HRTF
10           Signal processing of HRTF
11           Comparison of HRTF databases
12           Principle of three-dimensional sound reproduction
13           Acoustic VR system
Appendix           
Appendix 1         Perception of direction of an actual sound source
Appendix 2         Transmission path of sound waves
Appendix 3         Prediction method of room acoustics
Appendix 4         Time window
Appendix 5         Method for making an earplug-type microphone
Appendix 6         HRTFs using 96-kHz sampling

About the author

Prof. Kazuhiro Iida:

Faculty of Advanced Engineering, Spatial Hearing Laboratory
Chiba Institute of Technology
Narashino, Japan
kiida.hrtf@gmail.com

Summary

This book covers all aspects of head-related transfer function (HRTF), from the fundamentals through to the latest applications, such as 3D sound systems. An introductory chapter defines HRTF, describes the coordinate system used in the book, and presents the most recent research achievements in the field. HRTF and sound localization in the horizontal and median planes are then explained, followed by discussion of individual differences in HRTF, solutions to this individuality (personalization of HRTF), and methods of sound image control for an arbitrary 3D direction, encompassing both classic theory and state of the art data. The relations between HRTF and sound image distance and between HRTF and speech intelligibility are fully explored, and measurement and signal processing methods for HRTF are examined in depth. Here, supplementary material is provided to enable readers to measure and analyze HRTF by themselves. In addition, some typical HRTF databases are compared. The final two chapters are devoted to the principles and applications of acoustic virtual reality. This clearly written book will be ideal for all who wish to learn about HRTF and how to use it in their research. 

Product details

Authors Kazuhiro Iida
Publisher Springer, Berlin
 
Languages English
Product format Hardback
Released 01.01.2019
 
EAN 9789811397448
ISBN 978-981-1397-44-8
No. of pages 234
Dimensions 170 mm x 240 mm x 16 mm
Weight 596 g
Illustrations X, 234 p. 222 illus., 51 illus. in color.
Subjects Natural sciences, medicine, IT, technology > Medicine > General

B, Acoustics, biotechnology, Psychology Research, Behavioral Sciences and Psychology, Psychological methodology, Biomedical and Life Sciences, Biomedical engineering, Biomedical Engineering/Biotechnology, Experiential research, Wave mechanics (vibration & acoustics), Engineering Acoustics, Acoustic & sound engineering, Acoustical engineering

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