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触覚arXiv:2404.18972

全身振動が電気振動知覚に与える影響は刺激持続時間に依存する

Impact of whole-body vibrations on electrovibration perception varies with target stimulus duration

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車両の揺れを模した全身振動がタッチスクリーン上の電気振動刺激の知覚閾値に与える影響を調べ、短時間刺激では振動により知覚が妨げられることを示した。

著者: Jan D. A. Vuik, Daan M. Pool, Y. Vardar

分類: cs.HC, cs.RO, cs.SY, eess.SY

原文アブストラクト

This study explores the impact of whole-body vibrations induced by external vehicle perturbations, such as aircraft turbulence, on the perception of electrovibration displayed on touchscreens. Electrovibration holds promise as a technology for providing tactile feedback on future touchscreens, addressing usability challenges in vehicle cockpits. However, its performance under dynamic conditions, such as during whole-body vibrations induced by turbulence, still needs to be explored. We measured the absolute detection thresholds of 15 human participants for short- and long-duration electrovibration stimuli displayed on a touchscreen, both in the absence and presence of two types of turbulence motion generated by a motion simulator. Concurrently, we measured participants' applied contact force and finger scan speeds. Significantly higher (38%) absolute detection thresholds were observed for short electrovibration stimuli than for long stimuli. Finger scan speeds in the direction of turbulence, applied forces, and force fluctuation rates increased during whole-body vibrations due to biodynamic feedthrough. As a result, turbulence also significantly increased the perception thresholds, but only for short-duration electrovibration stimuli. The results reveal that whole-body vibrations can impede the perception of short-duration electrovibration stimuli, due to involuntary finger movements and increased normal force fluctuations. Our findings offer valuable insights for the future design of touchscreens with tactile feedback in vehicle cockpits.

関連論文

PR本紙発行元 EmplifAI