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High frequency acceleration feedback significantly increases the realism of haptically rendered textured surfaces

机译:高频加速度反馈显着提高了触觉渲染纹理表面的真实性

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Almost every physical interaction generates high frequency vibrations, especially if one of the objects is a rigid tool. Previous haptics research has hinted that the inclusion or exclusion of these signals plays a key role in the realism of haptically rendered surface textures, but this connection has not been formally investigated until now. This paper presents a human subject study that compares the performance of a variety of surface rendering algorithms for a master-slave teleoperation system; each controller provides the user with a different combination of position and acceleration feedback, and subjects compared the renderings with direct tool-mediated exploration of the real surface. We use analysis of variance to examine quantitative performance metrics and qualitative realism ratings across subjects. The results of this study show that algorithms that include high-frequency acceleration feedback in combination with position feedback achieve significantly higher realism ratings than traditional position feedback alone. Furthermore, we present a frequency-domain metric for quantifying a controller's acceleration feedback performance; given a constant surface stiffness, the median of this metric across subjects was found to have a significant positive correlation with median realism rating.
机译:几乎每个物理相互作用都产生高频振动,特别是如果其中一个物体是刚性工具。之前的触觉研究已经暗示包含或排除这些信号在触觉渲染曲面纹理的现实中发挥着关键作用,但此连接尚未正式调查。本文提出了一种人类主题研究,比较了各种表面渲染算法的主奴隶龙眼技术系统;每个控制器向用户提供不同的位置和加速度反馈的组合,对象将渲染与实际表面的直接刀具介导的勘探进行了比较。我们使用方差分析来检查跨对象的定量性能度量和定性现实主义评级。该研究的结果表明,包括高频加速度反馈的算法与位置反馈结合使用,比单独的传统位置反馈实现明显更高的现实主义评级。此外,我们提出了一种用于量化控制器的加速度反馈性能的频域度量;鉴于恒定的表面刚度,发现跨对象的该度量的中值与中值的现实速度具有显着的正相关性。

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