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Mitigating the Human-Robot Domain Discrepancy in Visual Pre-training for Robotic Manipulation

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arxiv 2406.14235 v3 pith:OGU3WDNI submitted 2024-06-20 cs.CV cs.RO

classification cs.CVcs.RO
keywords domainhuman-robotmodelstasksacrossdatadifferentmanipulation
verification ladder T0 review T1 audit T2 compute T3 formal
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Learning generalizable visual representations across different embodied environments is essential for effective robotic manipulation in real-world scenarios. However, the limited scale and diversity of robot demonstration data pose a significant challenge. Recent research has explored leveraging large-scale human activity data for pre-training, but the substantial morphological differences between humans and robots introduce a significant human-robot domain discrepancy, hindering the generalization of these models to downstream manipulation tasks. To overcome this, we propose a novel adaptation paradigm that leverages readily available paired human-robot video data to bridge the domain gap. Our method employs a human-robot contrastive alignment loss to align the semantics of human and robot videos, adapting pre-trained models to the robot domain in a parameter-efficient manner. Experiments on 20 simulated tasks across two different benchmarks and five real-world tasks demonstrate significant improvements. These results span both single-task and language-conditioned multi-task settings, evaluated using two different pre-trained models. Compared to existing pre-trained models, our adaptation method improves the average success rate by over 7% across multiple tasks on both simulated benchmarks and real-world evaluations.

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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. Omni-Perception: Omnidirectional Collision Avoidance for Legged Locomotion in Dynamic Environments

    cs.RO 2025-05 conditional novelty 6.0 of 10

    Omni-Perception is an end-to-end RL policy for legged robots that processes raw LiDAR point clouds with PD-RiskNet to achieve omnidirectional collision avoidance, validated in simulation and on a Unitree G1.

  2. Native Video-Action Pretraining for Generalizable Robot Control

    cs.RO 2026-07 conditional novelty 5.0 of 10

    A video-action foundation model pretrained natively with a causal diffusion transformer and semantic visual-action tokenizer reports improved few-shot robot manipulation and 225 Hz asynchronous closed-loop control.

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