半空超声触觉对局部形状识别的研究

Thomas Howard, Gerard Gallagher, A. Lécuyer, C. Pacchierotti, M. Marchal
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引用次数: 24

摘要

空中触觉技术能够在用户和触觉界面之间没有任何直接接触的情况下传递触觉。这项技术的一个代表性例子是超声波触觉,它使用超声波相控阵来传递触觉。超声触觉的研究还处于起步阶段,在这一领域仍缺乏原则性的感知研究。本文介绍了一系列人类受试者实验,研究与超声触觉界面(Ultrahaptics STRATOS平台)渲染2D形状相关的重要感知方面。我们进行了四项用户研究,旨在评估(i)通过幅度调制呈现的静态焦点的绝对检测阈值,(ii)通过时空调制呈现的线条模式的绝对检测和识别阈值,(iii)区分不同线条方向的能力,以及(iv)感知虚拟凸起和洞的能力。这些结果揭示了这种新技术对2D形状的渲染能力和局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigating the Recognition of Local Shapes Using Mid-air Ultrasound Haptics
Mid-air haptics technologies are able to convey haptic sensations without any direct contact between the user and the haptic interface. One representative example of this technology is ultrasound haptics, which uses ultrasonic phased arrays to deliver haptic sensations. Research on ultrasound haptics is only in its beginnings, and the literature still lacks principled perception studies in this domain. This paper presents a series of human subject experiments investigating important perceptual aspects related to the rendering of 2D shapes by an ultrasound haptic interface (the Ultrahaptics STRATOS platform). We carried out four user studies aiming at evaluating (i) the absolute detection threshold for a static focal point rendered via amplitude modulation, (ii) the absolute detection and identification thresholds for line patterns rendered via spatiotemporal modulation, (iii) the ability to discriminate different line orientations, and (iv) the ability to perceive virtual bumps and holes. These results shed light on the rendering capabilities and limitations of this novel technology for 2D shapes.
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