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High-Speed and Impact Resilient Teleoperation of Humanoid Robots

Sylvain Bertrand, Luigi Penco, D. D. Anderson, Duncan Calvert, Valentine Roy, Stephen McCrory, Khizar Mohammed, S. F. Sánchez, Will Griffith, Steve Morfey, Alexis Maslyczyk, Achintya Mohan, Bingyin Ma, Kartik Suryavanshi, Patrick Dills, Jerry Pratt, Victor Ragusila, Brandon Shrewsbury, Robert J. Griffin

Year
2024
Citations
10

Abstract

Teleoperation of humanoid robots has long been a challenging domain, necessitating advances in both hardware and software to achieve seamless and intuitive control. This paper presents an integrated solution based on several elements: calibration-free motion capture and retargeting, lowlatency fast whole-body kinematics streaming toolbox and high-bandwidth cycloidal actuators. Our motion retargeting approach stands out for its simplicity, requiring only 7 IMUs to generate full-body references for the robot. The kinematics streaming toolbox, ensures real-time, responsive control of the robot’s movements, significantly reducing latency and enhancing operational efficiency. Additionally, the use of cycloidal actuators makes it possible to withstand high speeds and impacts with the environment. Together, these approaches contribute to a teleoperation framework that offers unprecedented performance. Experimental results on the humanoid robot Nadia demonstrate the effectiveness of the integrated system (https://youtu.be/F6dqCauGPEM).

Keywords

TeleoperationHumanoid robotComputer scienceActuatorRobotRetargetingKinematicsToolboxSoftwareSimulation

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