用可穿戴触觉反馈提升遥控机器人的操作体验
Wearable Haptics for a Marionette-inspired Teleoperation of Highly Redundant Robotic Systems
- 引入木偶式遥操作概念,加入可穿戴触觉设备实现多自由度控制
- 实验表明触觉反馈显著提升任务完成率与用户感知能力
- 适合需要精细操控冗余机器人的研究人员和工程师
具有运动-操作能力的复杂、运动学冗余机器人遥操作对人类操作员构成挑战,因其需掌握大量自由度以完成任务。现有研究提出一种虚拟物理交互界面,类比‘木偶’控制,但仅提供视觉反馈。本文提出扩展该界面,引入可穿戴触觉反馈装置,使操作员获得完整的感官运动控制能力,并大幅提升对机器人响应及环境交互的认知。通过在具备轮腿混合结构与双臂上肢的CENTAURO机器人上进行的非专业人士实验,评估了有无触觉反馈下的遥操作性能与用户体验。结果表明,触觉反馈显著提升了任务表现与操作流畅性。
原文摘要 · Abstract (English)
The teleoperation of complex, kinematically redundant robots with loco-manipulation capabilities represents a challenge for human operators, who have to learn how to operate the many degrees of freedom of the robot to accomplish a desired task. In this context, developing an easy-to-learn and easy-to-use human-robot interface is paramount. Recent works introduced a novel teleoperation concept, which relies on a virtual physical interaction interface between the human operator and the remote robot equivalent to a "Marionette" control, but whose feedback was limited to only visual feedback on the human side. In this paper, we propose extending the "Marionette" interface by adding a wearable haptic interface to cope with the limitations given by the previous works. Leveraging the additional haptic feedback modality, the human operator gains full sensorimotor control over the robot, and the awareness about the robot's response and interactions with the environment is greatly improved. We evaluated the proposed interface and the related teleoperation framework with naive users, assessing the teleoperation performance and the user experience with and without haptic feedback. The conducted experiments consisted in a loco-manipulation mission with the CENTAURO robot, a hybrid leg-wheel quadruped with a humanoid dual-arm upper body.
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