T. Machino, Y. Nanjo, Y. Yanagihara, H. Kawata, S. Iwaki, K. Shimokura
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引用次数: 7
摘要
为了创造一个更有效的环境来执行远程维护,作者提出了一种新的协作概念,称为机器人增强通信(RAC)。在RAC中,维护机器人和现场工作人员由远程支持中心的另一位熟练的操作人员协助。通过人类无法模仿的机器人功能来强调远程支持人员的意图,RAC可以为现场工作人员提供有效的支持。在本研究中,作为具有维修机器人投影能力的RAC的第一个表现形式,开发了一个名为SCOPE (sight collaboration by projection effect)的原型远程协作系统。该系统由一个带有摄像头的投影仪单元、一个用于视频/语音通信的多控制单元(MCU)和通过网络连接的pc组成。它有三个关键功能:在远程支持者和现场工作人员之间创建共享视场,在真实空间中保持与对象相关的元信息,并将元信息投射到对象上。通过对典型维护操作中涉及的两个基本任务“理解目标对象”和“传递指令细节”的实验来评估这些功能的有效性。实验结果表明,每个功能都能有效地缩短维修操作的时间。
Robot-augmented communication: a remote-collaboration system based on a shared field of view in real space
To create a more efficient environment in which to perform remote maintenance, the authors propose a novel collaboration concept, called robot-augmented communication (RAC). In RAC a maintenance robot and an on-site human worker are assisted by another skilled human operator at a remote support center. By emphasizing the intentions of the remote supporter through robot functions that cannot be imitated by humans, RAC can provide effective support for the on-site worker. In the present study, as the first manifestation of RAC, featuring the projection capability of a maintenance robot, a prototype remote-collaboration system named SCOPE (sight collaboration by projection effect) was developed. This system consists of a projector unit with a camera, a multiple control unit (MCU) for video/voice communications, and PCs connected via a network. It has three key functions: creating a shared field of view between a remote supporter and an on-site worker, keeping meta-information related to objects in real space, and projecting meta-information onto the objects. The effectiveness of these functions was evaluated by experiments on two fundamental tasks $"comprehending a target object" and "transmission of instruction details" nvolved in a typical maintenance operation. The experimental results show that each function is effective in shortening the time taken to perform the maintenance operation.