Nakamura Taku, Yamamoto Akio
IEEE Trans Haptics. 2016 Jul-Sep;9(3):311-22. doi: 10.1109/TOH.2016.2556660. Epub 2016 Apr 20.
This paper proposes a visuo-haptic feedback system that can provide haptic feedback to multiple users on an LCD monitor using electrostatic adhesion and built-in capacitive sensors. The prototype system consists of a 40-inch LCD monitor, an ITO electrode sheet arranged on the monitor, and multiple contact pads for electrostatic adhesion. By applying low-frequency haptic voltage and high-frequency sensing voltage to each pad, the system realizes passive haptic feedback, as well as position sensing using the same components. The passive haptic feedback force exceeds 1 N at 300 V rms. The performance of the sensing system is investigated in terms of interference, which shows the haptic voltage and existence of multiple pads can affect the sensing and can shift the output by a few millimeters. A pilot application, virtual hockey game, successfully demonstrates the sensing and haptic rendering capability of the proposed system. The effect of the interference on the demonstration is discussed.
本文提出了一种视觉-触觉反馈系统,该系统可以利用静电吸附和内置电容传感器在液晶显示器上为多个用户提供触觉反馈。该原型系统由一台40英寸液晶显示器、布置在显示器上的ITO电极片以及多个用于静电吸附的接触垫组成。通过向每个垫施加低频触觉电压和高频传感电压,该系统实现了被动触觉反馈以及使用相同组件进行位置传感。在300 V rms时,被动触觉反馈力超过1 N。从干扰方面对传感系统的性能进行了研究,结果表明触觉电压和多个垫的存在会影响传感,并可能使输出偏移几毫米。一个试点应用,虚拟曲棍球游戏,成功地展示了所提出系统的传感和触觉渲染能力。讨论了干扰对演示的影响。