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Planning safe cyclic motions under repetitive task constraints

Massimo Cefalo, Giuseppe Oriolo, Marilena Vendittelli

Year
2013
Citations
19

Abstract

We consider motion planning in the presence of obstacles for redundant robotic systems subject to repetitive task constraints. For this open problem, we present a novel control-based randomized planner which produces cyclic, collision-free paths in configuration space and guarantees continuous satisfaction of the task constraints. In particular, the proposed algorithm relies on bidirectional search and loop closure in the task-constrained configuration space. Planning experiments on a simple 3R planar robot and the KUKA LWR-IV 7-dof manipulator are reported to show the effectiveness of the proposed method.

Keywords

Motion planningTask (project management)Computer sciencePlannerRobotClosure (psychology)PlanarConfiguration spaceControl theory (sociology)Collision avoidance

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