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Presentation of Surface Height Profiles Based on Frequency Modulation at Constant Amplitude Using Vibrotactile Elements

机译:基于触变元件的恒定振幅频率调制的表面高度轮廓表示

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This study attempted to observe what effects the frequency modulation of vibration elements produce in representing a tactile shape. Tactile shapes were modulated based on frequency difference at constant amplitude through a tactile feedback array of 30 (5 × 6) pins, which stimulated the finger pad. Experiment I showed that participants feel height changes when modulating frequency. In Experiment II, the participants were asked to discriminate three basic tactile shape patterns, which were generated with different frequencies at constant amplitude. Experiment II proved that spatial height information can be represented by modulating temporal information. In Experiment III, the frequency modulation method was applied to the tactile mouse system. Dynamic frequency modulation at passive touch can be used to transmit tactile height pattern information to the user of the mouse pointer for more practical application. The results showed that the participants were able to discern eight predefined shapes with an accuracy of 98.4% upon passive touch.
机译:这项研究试图观察振动元件的频率调制在代表触觉形状方面产生什么影响。通过30个(5×6)针脚的触觉反馈阵列,基于恒定幅度的频率差来调制触觉形状,从而刺激了指垫。实验一表明,参与者在调节频率时会感到身高变化。在实验II中,要求参与者区分三种基本的触觉形状模式,这些模式是在恒定振幅下以不同的频率生成的。实验二证明空间高度信息可以通过调制时间信息来表示。在实验III中,将频率调制方法应用于触觉鼠标系统。被动触摸时的动态频率调制可用于将触觉高度模式信息传输到鼠标指针的用户,以用于更实际的应用。结果表明,参与者在被动触摸时能够分辨出9种预定义形状,准确率达到98.4%。

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