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AdaManip: Adaptive Articulated Object Manipulation Environments and Policy Learning

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arxiv 2502.11124 v1 pith:WGTDKALD submitted 2025-02-16 cs.RO cs.AI

classification cs.ROcs.AI
keywords manipulationadaptivearticulatedobjectsobjectmechanismsvisualadamanip
verification ladder T0 review T1 audit T2 compute T3 formal
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Articulated object manipulation is a critical capability for robots to perform various tasks in real-world scenarios. Composed of multiple parts connected by joints, articulated objects are endowed with diverse functional mechanisms through complex relative motions. For example, a safe consists of a door, a handle, and a lock, where the door can only be opened when the latch is unlocked. The internal structure, such as the state of a lock or joint angle constraints, cannot be directly observed from visual observation. Consequently, successful manipulation of these objects requires adaptive adjustment based on trial and error rather than a one-time visual inference. However, previous datasets and simulation environments for articulated objects have primarily focused on simple manipulation mechanisms where the complete manipulation process can be inferred from the object's appearance. To enhance the diversity and complexity of adaptive manipulation mechanisms, we build a novel articulated object manipulation environment and equip it with 9 categories of objects. Based on the environment and objects, we further propose an adaptive demonstration collection and 3D visual diffusion-based imitation learning pipeline that learns the adaptive manipulation policy. The effectiveness of our designs and proposed method is validated through both simulation and real-world experiments. Our project page is available at: https://adamanip.github.io

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Try Once, Then Optimal: De-Redundified Procedure Memory for Cross-Episode Exploration Amortization

    cs.RO 2026-07 conditional novelty 6.0 of 10

    Object-centric procedure memory amortizes hidden-state exploration across encounters, cutting robot manipulation operations 16–30% at non-regressing success.

  2. Learn from What We HAVE: History-Aware VErifier that Reasons about Past Interactions Online

    cs.RO 2025-08 conditional novelty 6.0 of 10

    A history-aware verifier that scores candidate actions using past interactions cuts failure rates in ambiguous robot manipulation tasks compared to using the generator alone.

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