ROLGNIFeb 8, 2024

Intelligent Mode-switching Framework for Teleoperation

arXiv:2402.06047v13 citationsh-index: 6ICRA
Originality Incremental advance
AI Analysis

This addresses the problem of high mental demand and communication bottlenecks in teleoperation for operators, though it appears incremental by integrating existing methods like DRL with user intention recognition.

The paper tackles the difficulty of teleoperation by proposing an intelligent mode-switching framework that uses deep reinforcement learning to autonomously switch between autonomous and teleoperation modes, achieving up to 50% communication load reduction and improved task completion probability.

Teleoperation can be very difficult due to limited perception, high communication latency, and limited degrees of freedom (DoFs) at the operator side. Autonomous teleoperation is proposed to overcome this difficulty by predicting user intentions and performing some parts of the task autonomously to decrease the demand on the operator and increase the task completion rate. However, decision-making for mode-switching is generally assumed to be done by the operator, which brings an extra DoF to be controlled by the operator and introduces extra mental demand. On the other hand, the communication perspective is not investigated in the current literature, although communication imperfections and resource limitations are the main bottlenecks for teleoperation. In this study, we propose an intelligent mode-switching framework by jointly considering mode-switching and communication systems. User intention recognition is done at the operator side. Based on user intention recognition, a deep reinforcement learning (DRL) agent is trained and deployed at the operator side to seamlessly switch between autonomous and teleoperation modes. A real-world data set is collected from our teleoperation testbed to train both user intention recognition and DRL algorithms. Our results show that the proposed framework can achieve up to 50% communication load reduction with improved task completion probability.

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