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短时间延迟不会阻碍触觉通信的优势。

Short Time Delay Does Not Hinder Haptic Communication Benefits.

出版信息

IEEE Trans Haptics. 2021 Apr-Jun;14(2):322-327. doi: 10.1109/TOH.2021.3079227. Epub 2021 Jun 17.

Abstract

Haptic communication, the exchange of force and tactile information during dancing or moving a table together, has been shown to benefit the performance of human partners. Similarly, it could also be used to improve the performance of robots working in contact with a human operator. As we move to more robot integrated workspaces, how common network features such as delay or jitter impact haptic communication need to be better understood. Here using a human-like interactive robotic controller, that has been found to be indistinguishable by humans to human interaction, we evaluate how subjects' performance and perception is altered by varying levels of transmission delay. We find that subjects are able to recognise haptic delay at very small levels within haptic interaction. However, while they are consciously aware of the delay they can only compensate for it up until a certain point, after which they perceive it as the addition of noise/impedance into the system.

摘要

触觉交流,即在跳舞或一起移动桌子时交换力和触觉信息,已被证明有益于人类伙伴的表现。同样,它也可以用来提高与人类操作员接触的机器人的性能。随着我们进入更多机器人集成的工作空间,需要更好地了解常见的网络特征(如延迟或抖动)如何影响触觉通信。在这里,我们使用类似于人类的交互式机器人控制器,该控制器已被发现与人类与人类的交互无法区分,评估了在不同的传输延迟水平下,主体的表现和感知是如何改变的。我们发现,主体能够在非常小的触觉交互水平上识别触觉延迟。然而,尽管他们有意识地意识到延迟,但他们只能在一定程度上进行补偿,之后他们就会将其视为系统中噪声/阻抗的增加。

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