使用低分辨率因子阵列的振动触觉字母读取

Y. Yanagida, M. Kakita, R. Lindeman, Y. Kume, N. Tetsutani
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引用次数: 75

摘要

振动触觉显示已经在感官替代的背景下研究了几十年。最近,许多振动触觉显示器已经开发出来,以扩展虚拟现实中的感官模式。其中一些针对整个身体作为刺激区域,但现有的系统仅针对身体特定部位的离散刺激点而设计。然而,由于人类触觉具有更高的分辨率,为了实现通用的振动触觉显示,可能需要更高的密度进行因子对齐。这种方法的一个问题是,它可能导致所需因子的数量高得不切实际。我们目前的重点是探索简化系统的方法,同时保持可接受的表达能力水平。作为第一步,我们选择了一个经过充分研究的任务:触觉字母阅读。我们测试了区分字母和数字字母的可能性,方法是在椅背上安装一个3乘3的振动马达阵列。这些因子按照相同的顺序被依次驱动,就好像有人在追踪椅子背面的字母一样。结果显示,在某些情况下,87%的字母识别成功,这与之前使用更大阵列的研究结果接近。
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Vibrotactile letter reading using a low-resolution tactor array
Vibrotactile displays have been studied for several decades in the context of sensory substitution. Recently, a number of vibrotactile displays have been developed to extend sensory modalities in virtual reality. Some of these target the whole body as the stimulation region, but existing systems are only designed for discrete stimulation points at specific parts of the body. However, since human tactile sensation has more resolution, a higher density might be required in factor alignment in order to realize general-purpose vibrotactile displays. One problem with this approach is that it might result in an impractically high number of required tactors. Our current focus is to explore ways of simplifying the system while maintaining an acceptable level of expressive ability. As a first step, we chose a well-studied task: tactile letter reading. We examined the possibility of distinguishing alphanumeric letters by using only a 3-by-3 array of vibrating motors on the back of a chair. The tactors are driven sequentially in the same sequence as if someone were tracing the letter on the chair's back. The results showed 87% successful letter recognition in some cases, which was close to the results in previous research with much larger arrays.
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