Yamamoto Akio, Nagasawa Shuichi, Yamamoto Hiroaki, Higuchi Toshiro
Department of Precision Engineering, the University of Tokyo, Japan.
IEEE Trans Vis Comput Graph. 2006 Mar-Apr;12(2):168-77. doi: 10.1109/TVCG.2006.28.
A new electrostatic tactile display is proposed to realize compact tactile display devices that can be incorporated with virtual reality systems. The tactile display of this study consists of a thin conductive film slider with stator electrodes that excite electrostatic forces. Users of the device experience tactile texture sensations by moving the slider with their fingers. The display operates by applying two-phase cyclic voltage patterns to the electrodes. The display is incorporated into a tactile telepresentation system to realize explorations of remote surface textures with real-time tactile feedback. In the system, a PVDF tactile sensor and a DSP controller automatically generate voltage patterns to present surface texture sensations through the tactile display. A sensor, in synchronization with finger motion on the tactile display, scans a texture sample and outputs information about the sample surface. The information is processed by a DSP and fed back to the tactile display in real time. The tactile telepresentation system was evaluated in texture discrimination tests and demonstrated a 79 percent correct answer ratio. A transparent electrostatic tactile display is also reported in which the tactile display is combined with an LCD to realize a visual-tactile integrated display system.
提出了一种新型静电触觉显示器,以实现可与虚拟现实系统集成的紧凑型触觉显示设备。本研究中的触觉显示器由带有激发静电力的定子电极的薄导电膜滑块组成。该设备的用户通过用手指移动滑块来体验触觉质感。显示器通过向电极施加两相循环电压模式来运行。该显示器被集成到触觉远程呈现系统中,以实现具有实时触觉反馈的远程表面纹理探索。在该系统中,一个聚偏二氟乙烯触觉传感器和一个DSP控制器自动生成电压模式,以通过触觉显示器呈现表面纹理感觉。一个传感器与触觉显示器上的手指运动同步,扫描纹理样本并输出有关样本表面的信息。该信息由DSP处理并实时反馈到触觉显示器。在纹理辨别测试中对触觉远程呈现系统进行了评估,其正确答案率为79%。还报道了一种透明静电触觉显示器,其中触觉显示器与液晶显示器相结合,以实现视觉-触觉集成显示系统。