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3D Surface Presentations of Virtual Tilt Pad Using Moment Measurement for Pin-matrix Tactile Display

机译:用于引脚矩阵触觉显示器的虚拟倾斜垫的3D表面表示法

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Although several actuator principles for tactile displays composed of many micro-actuators exist, current actuators do not produce sufficient stroke and force generation. In order to compensate their shortage ability, we developed a new pin-matrix tactile display in which pin-protrusion distribution synchronizes pitch and roll moments applied to the display. In the present study, we evaluated the versatility of a virtual tilt pad presentation that is a progression from our previous study. In the tilt pad presentation, the rotations around thex-axis andy-axis are managed by the centroid position of the operator's fingers. In the evaluation, the subjects tried to compare the size of two virtual spheres to evaluate the 3D-shape presentation capability of the display. Since the sensation thresholds for each subject were low enough, we proved that operators could appreciate a fine distinction of sphere radii generated by the proposed display. In the case of a relatively large sphere, which is the most difficult case because it has the smallest curvature, the discrimination tasks improved with slight tapping as compared to pressing and rubbing with the fingers. Consequently, the manner of presentation can compensate the shortage ability of micro-actuators.
机译:尽管存在用于由许多微致动器组成的触觉显示器的几种致动器原理,但是当前的致动器不能产生足够的行程和力的产生。为了补偿他们的短缺能力,我们开发了一种新型的针式矩阵触觉显示器,其中的针式突出分布使施加在显示器上的俯仰和横滚力矩同步。在本研究中,我们评估了虚拟倾斜垫演示文稿的多功能性,该演示文稿是我们先前研究的一个进展。在倾斜垫演示中,围绕x轴和y轴的旋转由操作者手指的质心位置控制。在评估中,受试者试图比较两个虚拟球体的尺寸,以评估显示器的3D形状呈现能力。由于每个对象的感觉阈值都足够低,因此我们证明了操作员可以很好地区分建议显示器产生的球半径。在较大的球体的情况下,这是最困难的情况,因为它具有最小的曲率,与用手指按压和摩擦相比,通过轻敲轻击可以改善识别任务。因此,呈现方式可以补偿微致动器的不足能力。

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