2002Unpublished venueRequires access

3D sound image localization by interaural differences and the median plane HRTF

Masayuki Morimoto, Motokuni Itoh, Kazuhiro Iida

Open publisher page 6 citations

Abstract

A new 3-D localization method by simulating interaural differences and the HRTF in a sagittal plane is proposed. This method is based on the supposition that the spectral cues would be common in any sagittal plane. Localization tests were performed to examine the method. The results infer that a sound image of any directions can be localized using the HRTF in the median plane and interaural differences. Furthermore, localization tests in which ITD or ILD is simulated separately indicate that ITD is dominant on the perception of the lateral angle. 1.

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What this paper is about

A new 3-D localization method by simulating interaural differences and the HRTF in a sagittal plane is proposed. This method is based on the supposition that the spectral cues would be common in any sagittal plane. Localization tests were performed to examine the method. The results infer that a sound image of any directions can be localized using the HRTF in the median plane and interaural differences. Furthermore, localization tests in which ITD or ILD is simulated separately indicate that ITD is dominant on the perception of the lateral angle. 1.

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OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

A new 3-D localization method by simulating interaural differences and the HRTF in a sagittal plane is proposed. This method is based on the supposition that the spectral cues would be common in any sagittal plane. Localization tests were performed to examine the method. The results infer that a sound image of any directions can be localized using the HRTF in the median plane and interaural differences. Furthermore, localization tests in which ITD or ILD is simulated separately indicate that ITD is dominant on the perception of the lateral angle. 1.

Key concepts: Sound localization, Sagittal plane, Median plane, Interaural time difference, Plane (geometry), Sound (geography), Acoustics, Perception

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