Haptic Teleoperation of UAVs through Control Barrier Functions

November 08, 2019 Β· Declared Dead Β· πŸ› IEEE Transactions on Haptics

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Authors Dawei Zhang, Guang Yang, Rebecca P. Khurshid arXiv ID 1911.03418 Category cs.RO: Robotics Citations 36 Venue IEEE Transactions on Haptics Last Checked 6 months ago
Abstract
This paper presents a novel approach to haptic teleoperation. Specifically, we use control barrier functions (CBFs) to generate force feedback to help human operators safely fly quadrotor UAVs. CBFs take a control signal as input and output a control signal that is as close as possible to the initial control signal, while also meeting specified safety constraints. In the proposed method, we generate haptic force feedback based on the difference between a command issued by the human operator and the safe command returned by a CBF. In this way, if the user issues an unsafe control command, the haptic feedback will help guide the user towards the safe input command that is closest to their current command. We conducted a within-subject user study, in which 12 participants flew a simulated UAV in a virtual hallway environment. Participants completed the task with our proposed CBF-based haptic feedback, no haptic feedback, and haptic feedback generated via parametric risk fields, which is a state-of-the-art method described in the literature. The results of this study show that CBF-based haptic feedback can improve a human operator's ability to safely fly a UAV and reduce the operator's perceived workload, without sacrificing task efficiency.
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