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Hearing protection headsets can be made acoustically transparent to the user if environmental sound can be easily localized. A proposed array of microphones processed by a filter-and-sum technique can recreate the target head-related transfer functions. A three-dimensional numerical model of a KEMAR mannequin with headset was experimentally verified to a 12-kHz bandwidth. The optimal six-microphone array (three per headphone) was measured in an anechoic chamber, and preliminary subjective tests were encouraging.
Author (s): Gillett, Philip; Johnson, Marty; Perini, Efrain; Toso, Alessandro; Harris, Daniel
Affiliation:
Virginia Tech, Blacksburg, VA, USA; Sennheiser Research Laboratory, Palo Alto, CA, USA
(See document for exact affiliation information.)
Publication Date:
2010-11-06
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Permalink: https://aes2.org/publications/elibrary-page/?id=15739
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Gillett, Philip; Johnson, Marty; Perini, Efrain; Toso, Alessandro; Harris, Daniel; 2010; Microphone Array Optimization for a Hearing Restoration Headset [PDF]; Virginia Tech, Blacksburg, VA, USA; Sennheiser Research Laboratory, Palo Alto, CA, USA; Paper ; Available from: https://aes2.org/publications/elibrary-page/?id=15739
Gillett, Philip; Johnson, Marty; Perini, Efrain; Toso, Alessandro; Harris, Daniel; Microphone Array Optimization for a Hearing Restoration Headset [PDF]; Virginia Tech, Blacksburg, VA, USA; Sennheiser Research Laboratory, Palo Alto, CA, USA; Paper ; 2010 Available: https://aes2.org/publications/elibrary-page/?id=15739
@article{gillett2010microphone,
author={gillett philip and johnson marty and perini efrain and toso alessandro and harris daniel},
journal={journal of the audio engineering society},
title={microphone array optimization for a hearing restoration headset},
year={2010},
volume={58},
issue={11},
pages={941-951},
month={december},}