Robust Cooperative Manipulation without Force/Torque Measurements: Control Design and Experiments

October 30, 2017 Β· Declared Dead Β· πŸ› IEEE Transactions on Control Systems Technology

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Authors Christos K. Verginis, Matteo Mastellaro, Dimos V. Dimarogonas arXiv ID 1710.11088 Category cs.RO: Robotics Cross-listed eess.SY Citations 51 Venue IEEE Transactions on Control Systems Technology Last Checked 5 months ago
Abstract
This paper presents two novel control methodologies for the cooperative manipulation of an object by N robotic agents. Firstly, we design an adaptive control protocol which employs quaternion feedback for the object orientation to avoid potential representation singularities. Secondly, we propose a control protocol that guarantees predefined transient and steady-state performance for the object trajectory. Both methodologies are decentralized, since the agents calculate their own signals without communicating with each other, as well as robust to external disturbances and model uncertainties. Moreover, we consider that the grasping points are rigid, and avoid the need for force/torque measurements. Load distribution is also included via a grasp matrix pseudo-inverse to account for potential differences in the agents' power capabilities. Finally, simulation and experimental results with two robotic arms verify the theoretical findings.
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