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Bi-Level Belief Space Search for Compliant Part Mating Under Uncertainty

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arxiv 2409.15774 v1 pith:4T7TX2L7 submitted 2024-09-24 cs.RO

Bi-Level Belief Space Search for Compliant Part Mating Under Uncertainty

classification cs.RO
keywords compliantassemblybeliefbi-levelbilbaclearancecontactmating
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The problem of mating two parts with low clearance remains difficult for autonomous robots. We present bi-level belief assembly (BILBA), a model-based planner that computes a sequence of compliant motions which can leverage contact with the environment to reduce uncertainty and perform challenging assembly tasks with low clearance. Our approach is based on first deriving candidate contact schedules from the structure of the configuration space obstacle of the parts and then finding compliant motions that achieve the desired contacts. We demonstrate that BILBA can efficiently compute robust plans on multiple simulated tasks as well as a real robot rectangular peg-in-hole insertion task.

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