To investigating the capabilities of human beings to differentiate between tactile-vibratory stimuli with the same fundamental frequency but with different spectral content, this study concerns discrimination tasks comparing audio and haptic performances. Using an up-down 1 dB step adaptive procedure, the experimental protocol consists of measuring the discrimination threshold between a pure tone signal and a stimulus composed of two concurrent pure tones, changing the amplitude and frequency of the second tone. The task is performed employing exactly the same experimental apparatus (computer, AD-DA converters, amplifiers and drivers) for both audio and tactile modalities. The results show that it is indeed possible to discriminate between signals having the same fundamental frequency but different spectral content for both haptic and audio modalities, the latter being notably more sensitive. Furthermore, particular correlations have been found between the frequency of the second tone and the discrimination threshold values, for both audio and tactile modalities.

Tone-2 tones discrimination task comparing audio and haptics / L. Picinali, C. Feakes, D. Mauro, B. F. Katz - In: 2012 IEEE symposium on haptic audio-visual environment and games, HAVE 2012, october 8-9, Munich, Germany : proceedingsPiscataway : IEEE, 2012. - ISBN 9781467315661. - pp. 19-24 (( convegno IEEE International Workshop on Haptic Audio Visual Environments and Games tenutosi a Munich, Germany nel 2012 [10.1109/HAVE.2012.6374432].

Tone-2 tones discrimination task comparing audio and haptics

D. Mauro
Penultimo
;
2012

Abstract

To investigating the capabilities of human beings to differentiate between tactile-vibratory stimuli with the same fundamental frequency but with different spectral content, this study concerns discrimination tasks comparing audio and haptic performances. Using an up-down 1 dB step adaptive procedure, the experimental protocol consists of measuring the discrimination threshold between a pure tone signal and a stimulus composed of two concurrent pure tones, changing the amplitude and frequency of the second tone. The task is performed employing exactly the same experimental apparatus (computer, AD-DA converters, amplifiers and drivers) for both audio and tactile modalities. The results show that it is indeed possible to discriminate between signals having the same fundamental frequency but different spectral content for both haptic and audio modalities, the latter being notably more sensitive. Furthermore, particular correlations have been found between the frequency of the second tone and the discrimination threshold values, for both audio and tactile modalities.
Haptic interfaces; Psychoacoustics
Settore INF/01 - Informatica
2012
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/214659
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