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Pseudo-Haptic Display of Mass and Mass Distribution During Object Rotation in Virtual Reality

机译:虚拟现实在物体旋转期间伪触觉显示质量和质量分布

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摘要

We propose and evaluate novel pseudo-haptic techniques to display mass and mass distribution for proxy-based object manipulation in virtual reality. These techniques are specifically designed to generate haptic effects during the object's rotation. They rely on manipulating the mapping between visual cues of motion and kinesthetic cues of force to generate a sense of heaviness, which alters the perception of the object's mass-related properties without changing the physical proxy. First we present a technique to display an object's mass by scaling its rotational motion relative to its mass. A psycho-physical experiment demonstrates that this technique effectively generates correct perceptions of relative mass between two virtual objects. We then present two pseudo-haptic techniques designed to display an object's mass distribution. One of them relies on manipulating the pivot point of rotation, while the other adjusts rotational motion based on the real-time dynamics of the moving object. An empirical study shows that both techniques can influence perception of mass distribution, with the second technique being significantly more effective.
机译:我们提出并评估了新型伪触觉技术,以显示虚拟现实中基于代理的物体操纵的质量和质量分布。这些技术专门设计用于在对象的旋转期间产生触觉效果。他们依靠操纵运动和动力动力线索的视觉提示之间的映射来产生沉重感,这改变了对象的质量相关性能而不改变物理代理。首先,我们提出了一种通过相对于其质量缩放其旋转运动来显示对象质量的技术。心理物理实验表明,该技术有效地产生了两个虚拟物体之间对相对质量的正确看法。然后,我们展示了两个伪触觉技术,旨在显示对象的质量分布。其中一个依赖于操纵枢轴旋转点,而另一个基于移动物体的实时动态调整旋转运动。实证研究表明,两种技术都可以影响质量分布的感知,第二种技术明显更有效。

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