Further evidences of the contribution of the ear canal to directional hearing: Design of a compensation filter

It has been proven, and it is well documented in literature, that the directional response in HRTFs comes largely from the effect of the pinnae. However, few studies have analyzed the contribution given by the remaining part of the external ear, particularly the ear canal. This work investigates the...

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Veröffentlicht in:The Journal of the Acoustical Society of America 2013-05, Vol.133 (5_Supplement), p.3516-3516
Hauptverfasser: Martelloni, Andrea, Mauro, Davide A., Mancuso, Antonio
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container_title The Journal of the Acoustical Society of America
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creator Martelloni, Andrea
Mauro, Davide A.
Mancuso, Antonio
description It has been proven, and it is well documented in literature, that the directional response in HRTFs comes largely from the effect of the pinnae. However, few studies have analyzed the contribution given by the remaining part of the external ear, particularly the ear canal. This work investigates the directionally dependent response of the modeled ear canal of a dummy head, assuming that the behavior of the external ear is sufficiently linear to be approximated by an LTI system. In order to extract the ear canal’s transfer function, two critical microphone placements (at the eardrum and at the beginning of the cavum conchae) have been used. The system has been evaluated in several positions, along the azimuth plane and at different degrees of elevation. The results point out a non-negligible directional dependence that is well within the normal hearing range; based on these findings, physical models of the ear canal have been analyzed and evaluated. We have also considered the practical application to binaural listening, and the coloration originated by the superimposition of the contribution of two ear canals (the listener’s and the dummy head’s). A compensating FIR filter with arbitrary frequency response is discussed as a possible fix.
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title Further evidences of the contribution of the ear canal to directional hearing: Design of a compensation filter
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