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Vibrotactile perception: examining the coding of vibrations and the just noticeable difference under various conditions

机译:触觉感知:检查各种情况下的振动编码和明显差异

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摘要

High-frequency vibrations are an essential part of numerous manipulation tasks. A promising research area, in particular, are telemanipulation tasks where vibrations occurring in the remote environment are fed back through tactile displays. Three experiments concerning the perception of vibrations were conducted. The first experiment aims at determining whether vibrations are coded primarily by frequency, amplitude, or acceleration by human participants. Results show that primarily frequency and amplitude, but not acceleration of the vibrations were perceived. In the second experiment, participants' just noticeable difference (JND) for frequency under different conditions was examined. The resulting JND of 18% for frequencies showed dependence neither on the amplitude or acceleration, which were independently held constant, nor on the reference frequencies. Therefore, it is not necessary to adjust the subjective intensity for vibrations for each human operator when designing and using tactile displays. In the third experiment, the stimuli and the procedure of the second experiment were replicated using different configurations and a mere force-output device. The resulting JNDs were 21% for vibrations of 100 Hz, and 17% for vibrations of 150 Hz and above. Furthermore, there was no visual dominance over the haptic modality regarding the JND for frequencies.
机译:高频振动是许多操作任务的重要组成部分。特别是有前途的研究领域是远程操纵任务,其中通过触觉显示器反馈在远程环境中发生的振动。进行了三个有关振动感知的实验。第一个实验旨在确定振动是否主要由人类参与者通过频率,幅度或加速度进行编码。结果表明,主要观察到频率和振幅,但未观察到振动的加速。在第二个实验中,检查了参与者在不同条件下的频率的明显差异(JND)。所得到的频率的18%的JND既不依赖于振幅或加速度(它们独立地保持恒定),也不依赖于参考频率。因此,在设计和使用触觉显示器时,不必为每个操作人员调整振动的主观强度。在第三个实验中,使用不同的配置和仅使用力输出装置来复制第二个实验的刺激和过程。对于100 Hz的振动,所得JND为21%,对于150 Hz及以上的振动,所得JND为17%。此外,关于频率的JND,在触觉模态上没有视觉优势。

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