Komurasaki Seiya, Kajimoto Hiroyuki, Ishizuka Hiroki
Division of Intelligent Mechanical Systems Engineering, Graduate School of Engineering, Kagawa University, 2217-20 Hayashi-cho, Takamatsu, Kagawa 761-0396, Japan.
Department of Informatics, University of Electro-Communications, 1-5-1 Chofugaoka, Chofu, Tokyo 182-8585, Japan.
Micromachines (Basel). 2019 May 3;10(5):301. doi: 10.3390/mi10050301.
Tactile displays have been widely studied for many decades. Although multiple tactile stimuli are more effective to improve the quality of the presented tactile sensation, most tactile displays provide a single tactile stimulus. An integrated tactile display with electrovibration and electrical stimuli is proposed herein. It is expected that vibrational friction, pressure and vibration can be presented at the same time through the tactile display. Also, these stimuli only require electrodes for stimulation. Therefore, the tactile display can be easily miniaturized and densely arrayed on a substrate. In this study, a tactile display is designed and fabricated using the micro-fabrication process. Furthermore, the display is evaluated. First, the relationship between a single stimulus and the perception is investigated. The electrovibration and electrical stimuli have a frequency dependence on perception. Second, whether the multiple stimuli with the electrovibration and electrical stimuli are perceivable by the subjects is also evaluated. The results indicate that the multiple tactile stimuli are perceivable by the subjects. Also, the possibility that the electrovibration and electrical stimuli affect each other is confirmed.
几十年来,触觉显示器一直受到广泛研究。尽管多个触觉刺激对于提高所呈现触觉感受的质量更有效,但大多数触觉显示器仅提供单个触觉刺激。本文提出了一种集成电振动和电刺激的触觉显示器。期望通过该触觉显示器能够同时呈现振动摩擦、压力和振动。此外,这些刺激仅需要电极进行刺激。因此,该触觉显示器可以很容易地小型化并密集排列在基板上。在本研究中,使用微制造工艺设计并制造了一种触觉显示器。此外,还对该显示器进行了评估。首先,研究了单个刺激与感知之间的关系。电振动和电刺激对感知具有频率依赖性。其次,还评估了电振动和电刺激的多个刺激是否能被受试者感知。结果表明,受试者能够感知多个触觉刺激。此外,还证实了电振动和电刺激相互影响的可能性。