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PVRA: A Pointwise Key-point Voting Framework for Robotic Assembly

Kulunu Samarawickrama, Roel Pieters

arXiv:2608.19968Published August 20, 20260 citations
  • cs.RO
  • cs.CV
  • robotic
  • manipulation
  • action
  • robot

Abstract

Modern computer vision has enabled partial autonomy in robotic assembly manipulation. However, performing autonomous manipulation of a progressive assembly demands a more specific set of skills, in addition to perceiving the objects. Through a comparative analysis of research in the associated domains, we deduce that object-centric perception must advance towards learning assembly dependencies to predict meaningful actionable outputs for autonomous assembly manipulation. Subsequently, we present a 3D keypoint-based modular learning framework to learn assembly dependencies to infer actionable outputs given a RGB-D input of an assembly scene. We train and evaluate our trained network on an assembly pose estimation dataset and compare it against object-centric baselines with an augmented set of metrics for progressive assemblies.

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