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How Tactor Size and Density of Normal Indentation Tactile Displays Affects Grating Discrimination Tasks

机译:正常压痕触觉显示器的触针尺寸和密度如何影响光栅识别任务

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Tactile fingertip devices of vertically moving tactors have two important design parameters that significantly affect physical feedback and human tactile perception: tactor size and tactor density. However, there are a limited number of research studies that have evaluated the effect of these parameters on human tactile perception. This paper investigated the influence and interaction of these two parameters on a discrimination task. The task consisted of discriminating the spatial-period of sinusoidal gratings through the use of passive-guided touch. In two complementary experiments 40 participants performed the discrimination task under two different tactile conditions: (I) using direct bare fingertip sensing (baseline condition), and (II) using tactile displays with different tactor spacings and diameters. In both experiments differences between and within subjects were considered for Condition II, and for all test conditions the spatial-period Weber fraction for each participant was measured. Results from both experiments were consistent in indicating that tactile performance improves as tactor spacing is decreased and tactor diameter is increased. However, tactor spacings below 1.1 mm might not result in any significant further improvement. The findings of this study might help designers to choose design parameters for tactile displays based upon the cost-benefit of tactor density versus perceptual performance.
机译:垂直移动触觉的触觉指尖设备具有两个重要的设计参数,它们会显着影响物理反馈和人类触觉感知:触觉大小和触觉密度。但是,很少有研究评估这些参数对人类触觉的影响。本文研究了这两个参数对识别任务的影响和相互作用。该任务包括通过使用被动引导触摸来区分正弦光栅的空间周期。在两个补充实验中,有40名参与者在两种不同的触觉条件下执行了区分任务:(I)使用直接的裸指尖感应(基线条件),以及(II)使用具有不同触头间距和直径的触觉显示器。在两个实验中,条件II都考虑了受试者之间和受试者内部的差异,并且对于所有测试条件,均测量了每个参与者的空间周期Weber分数。两个实验的结果一致,表明随着触头间距的减小和触头直径的增大,触觉性能也会提高。但是,触针间距小于1.1毫米可能不会导致任何明显的进一步改善。这项研究的结果可能会帮助设计人员根据触觉密度与感知性能的成本效益选择触觉显示器的设计参数。

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