IEEE Trans Haptics. 2020 Apr-Jun;13(2):286-297. doi: 10.1109/TOH.2019.2922901. Epub 2019 Jun 14.
Wearable haptic systems offer portable, private tactile communication to a human user. To date, advances in wearable haptic devices have typically focused on the optimization of haptic cue transmission using a single modality, or have combined two types of cutaneous feedbacks, each mapped to a particular parameter of the task. Alternatively, researchers have employed arrays of haptic tactile actuators to maximize information throughput to a user. However, when large cue sets are to be transmitted, such as those required to communicate language, perceptual interference between transmitted cues can decrease the efficacy of single-sensory systems, or require large footprints to ensure salient spatiotemporal cues are rendered to the user. In this paper, we present a wearable, multi-sensory haptic feedback system, MISSIVE (Multi-sensory Interface of Stretch, Squeeze, and Integrated Vibration Elements), that conveys multi-sensory haptic cues to the user's upper arm. We present experimental results that demonstrate that rendering haptic cues with multi-sensory components-specifically, lateral skin stretch, radial squeeze, and vibrotactile stimuli-improved perceptual distinguishability in comparison to similar cues with all-vibrotactile components. These results support the incorporation of diverse stimuli, both vibrotactile and nonvibrotactile, for applications requiring large haptic cue sets.
可穿戴触觉系统为人类用户提供了便携式、私人的触觉通信。迄今为止,可穿戴触觉设备的进步通常侧重于使用单一模式优化触觉提示传输,或者结合两种类型的皮肤反馈,每种反馈都映射到任务的特定参数。或者,研究人员使用触觉触觉致动器阵列来最大限度地提高用户的信息吞吐量。然而,当需要传输大的提示集时,例如用于传达语言的提示集,传输提示之间的感知干扰会降低单感觉系统的效果,或者需要大的足迹来确保突出的时空提示呈现给用户。在本文中,我们提出了一种可穿戴的多感觉触觉反馈系统 MISSIVE(拉伸、挤压和集成振动元件的多感觉接口),它可以向用户的上臂传递多感觉触觉提示。我们展示了实验结果,表明与具有所有振动触觉组件的类似提示相比,呈现具有多感觉组件的触觉提示(具体为侧向皮肤拉伸、径向挤压和振动触觉刺激)可提高感知可区分性。这些结果支持在需要大的触觉提示集的应用中结合各种刺激,包括振动触觉和非振动触觉。