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Data-Driven Texture Rendering on an Electrostatic Tactile Display

机译:静电触觉显示器上的数据驱动纹理渲染

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In this article, we present a data-driven texture rendering method applied to a tactile display based on electrostatic attraction. The proposed method was examined in two steps. First, accelerations occurring due to sliding a tool on three different surfaces were measured, and then the collected data were replayed on an electrostatic tactile display. The proposed data-driven texture rendering method was evaluated against a conventional method in which a standard input such as a square wave was used for texture representation. Second, data from the Penn Haptic Texture Toolkit were used to generate virtual textures on the same tactile display. Psychophysical experiments were carried out for both steps, during which subjects rated similarities among the rendered virtual textures and the real samples. Confusion matrices were created, and multidimensional scaling (MDS) analysis was performed to create a perceptual space for further examination and to extract underlying dimensions of the textures. The results show that the virtual textures generated using the data-driven method were similar to the real textures. Roughness and stickiness were the primary dimensions of texture perception. Together with the supporting results from the MDS analysis, this study showed that the data-driven method is a viable solution for realistic texture rendering with electrostatic attraction.
机译:在本文中,我们提出了一种基于静电吸引的数据驱动纹理渲染方法,该方法应用于触觉显示器。分两步检查了提出的方法。首先,测量由于工具在三个不同表面上滑动而产生的加速度,然后在静电触觉显示器上回放收集的数据。相对于将方波等标准输入用于纹理表示的常规方法,对提出的数据驱动纹理渲染方法进行了评估。其次,使用Penn Haptic Texture Toolkit的数据在同一触觉显示器上生成虚拟纹理。对这两个步骤都进行了心理物理实验,在此期间,受试者对渲染的虚拟纹理和真实样本之间的相似性进行了评估。创建了混淆矩阵,并执行了多维缩放(MDS)分析,以创建用于进一步检查的感知空间并提取纹理的基础尺寸。结果表明,使用数据驱动方法生成的虚拟纹理与真实纹理相似。粗糙度和粘性是纹理感知的主要维度。结合MDS分析的支持结果,该研究表明,数据驱动方法是一种具有静电引力的逼真的纹理渲染的可行解决方案。

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