不同覆盖材料对虚拟直线触觉检测的影响

Patrick Coe, G. Evreinov, R. Raisamo
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引用次数: 0

摘要

为了提高触觉反馈的感觉,需要研究材料和感官调节剂的效果。特氟龙、尼龙网和硅酮覆盖层与横向振动结合进行了测试,以研究它们对触觉的影响。一个可感知的点沿着一条线移动,通过使用一个动态移动的最大干扰,通过四个触觉激励器的偏移驱动固定在大猩猩玻璃表面的角落来实现。这些反馈在一系列随机实验中呈现给8名参与者。尼龙网和聚四氟乙烯覆盖对用户在动态触觉虚拟直线定位任务中的表现的改善有统计学意义(p < 0.05)。而硅胶覆盖层对决策时间、任务重复次数和错误率的影响较小或没有影响(p > 0.05),其摩擦力是Gorilla Glass的3倍。横向振动调节剂(60赫兹)也可以成功地使用,性能提高约两倍,至少尼龙网和特氟龙覆盖都证明了这一点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Impact of Different Overlay Materials on the Tactile Detection of Virtual Straight Lines
To improve the perception of haptic feedback, materials and sense-modifier effects should be examined. Teflon, Nylon mesh, and Silicone overlays were tested in combination with lateral vibrations to study their impact on the tactile sense. A feelable point moving along a line was implemented through the use of a dynamically moving interference maximum generated via the offset actuation of four haptic exciters affixed to corners of a Gorilla Glass surface. This feedback was presented to eight participants in a series of randomized experiments. Both the Nylon mesh and Teflon covering revealed a statistically significant (p < 0.05) impact of improvement to the user performance in the task of dynamic haptic virtual straight lines localization. While Silicone covering, having three times greater friction than Gorilla Glass, has less or no impact on both decision time, the number of task repetitions, and error rate (p > 0.05). The lateral vibration modifier (60 Hz) can also successfully be used with an increase in performance by about twofold, at least that was demonstrated for both the Nylon mesh and Teflon covering.
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