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Optimal Sequential Task Assignment and Path Finding for Multi-Agent Robotic Assembly Planning

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arxiv 2006.08845 v1 pith:DPDTLWKQ submitted 2020-06-16 cs.RO cs.AIcs.MA

Optimal Sequential Task Assignment and Path Finding for Multi-Agent Robotic Assembly Planning

classification cs.RO cs.AIcs.MA
keywords taskalgorithmmustproblemrobotsapplicationsassemblyassignment
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study the problem of sequential task assignment and collision-free routing for large teams of robots in applications with inter-task precedence constraints (e.g., task $A$ and task $B$ must both be completed before task $C$ may begin). Such problems commonly occur in assembly planning for robotic manufacturing applications, in which sub-assemblies must be completed before they can be combined to form the final product. We propose a hierarchical algorithm for computing makespan-optimal solutions to the problem. The algorithm is evaluated on a set of randomly generated problem instances where robots must transport objects between stations in a "factory "grid world environment. In addition, we demonstrate in high-fidelity simulation that the output of our algorithm can be used to generate collision-free trajectories for non-holonomic differential-drive robots.

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