DocumentCode :
117862
Title :
Range extrapolation of Head-Related Transfer Function using improved Higher Order Ambisonics
Author :
Ling-song Zhou ; Chang-chun Bao ; Mao-shen Jia ; Bing Bu
Author_Institution :
Speech & Audio Signal Process. Lab., Beijing Univ. of Technol., Beijing, China
fYear :
2014
fDate :
9-12 Dec. 2014
Firstpage :
1
Lastpage :
4
Abstract :
3D audio technology based on binaural reproduction requires the Head-Related Transfer Function (HRTF) datasets to be available for all possible distance. However, due to the tedious work of measurement and large volume of resulting datasets, the HRTF is typically measured only for sources located at a fixed distance. In this paper, the concept of virtual loudspeaker arrays is utilized to achieve range extrapolation of the measured HRTF datasets at a single range. The virtual loudspeaker is driven by Higher Order Ambisonics (HOA). Specially, to restrict the near-field effect of HOA, a compensation method of modified Wiener filter is proposed. The simulation results indicate that the proposed method provides effective range extrapolation of HRTF.
Keywords :
Wiener filters; audio systems; extrapolation; loudspeakers; transfer functions; 3D audio technology; HOA; binaural reproduction; compensation method; head-related transfer function; higher order ambisonics; measured HRTF datasets; modified Wiener filter; near-field effect; range extrapolation; virtual loudspeaker arrays; Decision support systems; Extrapolation; Frequency measurement; Loudspeakers; Q measurement; Transfer functions; Volume measurement; Head-Related Transfer Function; improved Higher Order Ambisonics; range extrapolation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Asia-Pacific Signal and Information Processing Association, 2014 Annual Summit and Conference (APSIPA)
Conference_Location :
Siem Reap
Type :
conf
DOI :
10.1109/APSIPA.2014.7041527
Filename :
7041527
Link To Document :
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