Whole-Body Control with (Self) Collision Avoidance using Vector Field Inequalities

June 18, 2019 Β· Declared Dead Β· πŸ› IEEE Robotics and Automation Letters

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Authors Juan JosΓ© Quiroz-OmaΓ±a, Bruno Vilhena Adorno arXiv ID 1906.07322 Category cs.RO: Robotics Citations 35 Venue IEEE Robotics and Automation Letters Last Checked 6 months ago
Abstract
This work uses vector field inequalities (VFI) to prevent robot self-collisions and collisions with the workspace. Differently from previous approaches, the method is suitable for both velocity and torque-actuated robots. We propose a new distance function and its corresponding Jacobian in order to generate a VFI to limit the angle between two PlΓΌcker lines. This new VFI is used to prevent both undesired end-effector orientations and violation of joints limits. The proposed method is evaluated in a realistic simulation and on a real humanoid robot, showing that all constraints are respected while the robot performs a manipulation task.
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