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Sweet spot size of virtual acoustic imaging systems at asymmetric listener locations.

作者信息

Rose John, Nelson Philip, Rafaely Boaz, Takeuchi Takashi

机构信息

Institute of Sound and Vibration Research, University of Southampton, Highfield, United Kingdom.

出版信息

J Acoust Soc Am. 2002 Nov;112(5 Pt 1):1992-2002. doi: 10.1121/1.1510532.

DOI:10.1121/1.1510532
PMID:12430811
Abstract

Virtual acoustic imaging systems are effective when the listener's head location is close to the head location assumed when the system was designed. The "sweet spot" refers to the spatial bubble of head location in which the system is still effective. Some of the previous work investigating the "stereo dipole" acoustic imaging system shows that for the traditional on-axis listener location the "sweet spot" is about +/-5 cm for lateral head translations. Larger head movements than this require an update of the virtual acoustic imaging filters. The interest here is the "sweet spot" size at off-axis asymmetric listener locations or an understanding of how often one needs to update the filters to ensure the listener perceives a stable virtual image as they move. The examination of the off-axis "sweet spot" size comprises a theoretical acoustic analysis, computer simulations, and a subjective study. The simulations and subjective evaluation both demonstrate that the width of tolerable lateral head translations is comparable for the symmetric on-axis listener location and asymmetric listener locations that are as far as 25 cm off-axis.

摘要

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