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编码障碍物距离信息的振动触觉模式识别

Identification of Vibrotactile Patterns Encoding Obstacle Distance Information.

作者信息

Kim Yeongmi, Harders Matthias, Gassert Roger

出版信息

IEEE Trans Haptics. 2015 Jul-Sep;8(3):298-305. doi: 10.1109/TOH.2015.2415213. Epub 2015 Mar 20.

DOI:10.1109/TOH.2015.2415213
PMID:25807569
Abstract

Delivering distance information of nearby obstacles from sensors embedded in a white cane-in addition to the intrinsic mechanical feedback from the cane-can aid the visually impaired in ambulating independently. Haptics is a common modality for conveying such information to cane users, typically in the form of vibrotactile signals. In this context, we investigated the effect of tactile rendering methods, tactile feedback configurations and directions of tactile flow on the identification of obstacle distance. Three tactile rendering methods with temporal variation only, spatio-temporal variation and spatial/temporal/intensity variation were investigated for two vibration feedback configurations. Results showed a significant interaction between tactile rendering method and feedback configuration. Spatio-temporal variation generally resulted in high correct identification rates for both feedback configurations. In the case of the four-finger vibration, tactile rendering with spatial/temporal/intensity variation also resulted in high distance identification rate. Further, participants expressed their preference for the four-finger vibration over the single-finger vibration in a survey. Both preferred rendering methods with spatio-temporal variation and spatial/temporal/intensity variation for the four-finger vibration could convey obstacle distance information with low workload. Overall, the presented findings provide valuable insights and guidance for the design of haptic displays for electronic travel aids for the visually impaired.

摘要

除了盲杖本身的机械反馈外,通过嵌入白色盲杖中的传感器传递附近障碍物的距离信息,有助于视障人士独立行走。触觉是向盲杖使用者传达此类信息的常见方式,通常采用振动触觉信号的形式。在此背景下,我们研究了触觉渲染方法、触觉反馈配置和触觉流方向对障碍物距离识别的影响。针对两种振动反馈配置,研究了仅具有时间变化、时空变化以及空间/时间/强度变化的三种触觉渲染方法。结果表明,触觉渲染方法与反馈配置之间存在显著的交互作用。对于两种反馈配置,时空变化通常会带来较高的正确识别率。在四指振动的情况下,具有空间/时间/强度变化的触觉渲染也能带来较高的距离识别率。此外,在一项调查中,参与者表示比起单指振动,他们更喜欢四指振动。对于四指振动,时空变化和空间/时间/强度变化这两种首选渲染方法都能以较低的工作量传达障碍物距离信息。总体而言,本研究结果为视障人士电子出行辅助设备的触觉显示器设计提供了有价值的见解和指导。

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Identification of Vibrotactile Patterns Encoding Obstacle Distance Information.编码障碍物距离信息的振动触觉模式识别
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