arXiv · 1610.01297
Robust Quaternion-based Cooperative Manipulation without Force/Torque Information
Abstract
This paper proposes a task-space control protocol for the collaborative manipulation of a single object by N robotic agents. The proposed methodology is decentralized in the sense that each agent utilizes information associated with its own and the object's dynamic/kinematic parameters and no on-line communication takes place. Moreover, no feedback of the contact forces/torques is required, therefore employment of corresponding sensors is avoided. An adaptive version of the control scheme is also introduced, where the agents' and object's dynamic parameters are considered unknown. We also use unit quaternions to represent the object's orientation. In addition, load sharing coefficients between the agents are employed and internal force regulation is guaranteed. Finally, experimental studies with two robotic arms verify the validity and effectiveness of the proposed control protocol.
Explore related subjects
Keep this discovery
Christos K. Verginis, Matteo Mastellaro, Dimos V. Dimarogonas. 2016-10-05. Robust Quaternion-based Cooperative Manipulation without Force/Torque Information. https://arxiv.org/abs/1610.01297
Cite the original work for its findings. Save a collection to share your selection of sources.