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Reactive Cooperative Manipulation based on Set Primitives and Circular Fields

Riddhiman Laha, Luis Figueredo, Juraj Vrabel, Abdalla Swikir, Sami Haddadin

Year
2021
Citations
21

Abstract

This paper addresses the problem of real-time planning in constrained dual-arm manipulation scenarios. Our proposed coupling leverages manipulability information of the cooperative bimanual task-space to a vector-field based planner by means of a repulsive circulatory field, while geometric primitives in Spin(3)⋉ℝ <sup xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">3</sup> are explored for flexible task relaxation. Furthermore, the circular field informs the cooperative framework about the safety boundaries which are in turn used to further relax motion constraints within a collision-free ball in Cartesian space. This builds a funnel along the trajectory which can be directly tracked through the proposed switching of task-primitive-priorities. The switching strategy follows an approach that ensures robustness to chattering and continuity in the joint-space. Experiments verify that our framework can run within the inner control loop of Franka Emika Panda robots.

Keywords

Computer scienceRobotRobustness (evolution)Vector fieldBall (mathematics)Cartesian coordinate systemTrajectoryMotion planningRobot kinematicsControl theory (sociology)

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