具有吸引力的远程呈现通信与可移动和可触摸的显示机器人

Masa Ogata, R. Teramura, M. Imai
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引用次数: 4

摘要

提出了一种三轴显示臂结合触摸输入手动控制和人体跟踪自动控制的远程通信系统主动显示机器人。该系统通过在通信过程中实现两种类型的用户交互来呈现用户与机器人之间的距离变化行为;1)提供机器人的运动方向,以跟踪远离或即将经过显示机器人的用户;2)提供可触屏,以在用户位于显示系统前时激活和操纵显示方向。本地用户和远程用户使用同一系统进行通信,使用户的注意力通过系统转移到远程用户。通过用户触摸手指的移动来操纵显示器的可移动部分,使显示器与用户的意图和注意力相对应。可移动显示器通过用户的触摸操作有两个优点。一是通过触摸操作使显示臂移动,增强远程通信。二是通过显示器的操作实现非言语信息的传递。我们设计了与用户行为和用户通过显示器输入相关的硬件和软件。期望该系统能够解决远程设备操作的误区,从而实现直观的操作。为了评估该系统对直观操作的贡献,我们采用李克特问卷和访谈法进行了评估实验。我们验证了显示器可以响应操作员的触摸输入,有助于直观的体验。
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Attractive telepresence communication with movable and touchable display robot
We propose an active display robot for tele-communication system combining 3-axis display arm manually controlled by touch input, and automatically controlled by human tracking. This system is designed to present distance change behavior between user and robot by implementing two types of user interaction during communication; 1) Providing robot's movement to follow the user who is far from or going to pass by the display robot, 2) providing touchable display to activate and manipulate the direction of the display during the user is sited in front of the display system. Both local and remote users use the same system to communicate, make user's attention to distanced user via the system. Manipulating the movable part of the display by the movement of the finger of the user's touch makes the display correspond to user's intention and attention. There are two advantages of the movable display by the operation of the user's touch. One is to enhance remote communication by making the display arm moving with touch operation. Second is to enable the transmission of non-verbal information through the operation of the display. We designed hardware and software associated with user behavior and user input via the display. It is expected that the system will solve that the problem of misunderstanding of remote device operation, then it contribute to intuitive operation. In order to evaluate how this system does contribute to intuitive operation, we conducted an assessment experiment by using Questionnaire of Likert scale and interview. We verified that the display can move in response to operator's touch input contribute to intuitive experience.
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