Edge shape sensation presented in a noncontact manner using airborne ultrasound

Fuente: arXiv
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Autores principales: Kato, Koichi, Morisaki, Tao, Suzuki, Shun, Makino, Yasutoshi, Shinoda, Hiroyuki
Formato: Preprint
Publicado: 2024
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author Kato, Koichi
Morisaki, Tao
Suzuki, Shun
Makino, Yasutoshi
Shinoda, Hiroyuki
author_facet Kato, Koichi
Morisaki, Tao
Suzuki, Shun
Makino, Yasutoshi
Shinoda, Hiroyuki
contents To perceive 3D shapes such as pyramids, the perception of planes and edges as tactile sensations is an essential component. This is difficult to perceive with the conventional vibrotactile sensation used in ultrasound haptics because of its low spatial resolution. Recently, it has become possible to produce a high-resolution pressure sensation using airborne ultrasound. By using this pressure sensation, it is now possible to reproduce a linear, sharp-edged sensation in the area of a fingerpad. In this study, it is demonstrated that this pressure sensation can be used to reproduce the feeling of fine, sharp edges, and its effectiveness is confirmed by comparing it with conventional vibrotactile sensation. In the demonstration, participants can experience the contact sensation of several types of edges with different curvatures.
format Preprint
id arxiv_https___arxiv_org_abs_2411_05128
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Edge shape sensation presented in a noncontact manner using airborne ultrasound
Kato, Koichi
Morisaki, Tao
Suzuki, Shun
Makino, Yasutoshi
Shinoda, Hiroyuki
Human-Computer Interaction
To perceive 3D shapes such as pyramids, the perception of planes and edges as tactile sensations is an essential component. This is difficult to perceive with the conventional vibrotactile sensation used in ultrasound haptics because of its low spatial resolution. Recently, it has become possible to produce a high-resolution pressure sensation using airborne ultrasound. By using this pressure sensation, it is now possible to reproduce a linear, sharp-edged sensation in the area of a fingerpad. In this study, it is demonstrated that this pressure sensation can be used to reproduce the feeling of fine, sharp edges, and its effectiveness is confirmed by comparing it with conventional vibrotactile sensation. In the demonstration, participants can experience the contact sensation of several types of edges with different curvatures.
title Edge shape sensation presented in a noncontact manner using airborne ultrasound
topic Human-Computer Interaction
url https://arxiv.org/abs/2411.05128