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Home » Exploring Spatial Representations for Visual-Language-Action Model
arXiv AI

Exploring Spatial Representations for Visual-Language-Action Model

Advanced AI BotBy Advanced AI BotMay 20, 2025No Comments2 Mins Read
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[Submitted on 27 Jan 2025 (v1), last revised 19 May 2025 (this version, v5)]
Authors:Delin Qu, Haoming Song, Qizhi Chen, Yuanqi Yao, Xinyi Ye, Yan Ding, Zhigang Wang, JiaYuan Gu, Bin Zhao, Dong Wang, Xuelong Li

View a PDF of the paper titled SpatialVLA: Exploring Spatial Representations for Visual-Language-Action Model, by Delin Qu and 10 other authors

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Abstract:In this paper, we claim that spatial understanding is the keypoint in robot manipulation, and propose SpatialVLA to explore effective spatial representations for the robot foundation model. Specifically, we introduce Ego3D Position Encoding to inject 3D information into the input observations of the visual-language-action model, and propose Adaptive Action Grids to represent spatial robot movement actions with adaptive discretized action grids, facilitating learning generalizable and transferrable spatial action knowledge for cross-robot control. SpatialVLA is first pre-trained on top of a vision-language model with 1.1 Million real-world robot episodes, to learn a generalist manipulation policy across multiple robot environments and tasks. After pre-training, SpatialVLA is directly applied to perform numerous tasks in a zero-shot manner. The superior results in both simulation and real-world robots demonstrate its advantage of inferring complex robot motion trajectories and its strong in-domain multi-task generalization ability. We further show the proposed Adaptive Action Grids offer a new and effective way to fine-tune the pre-trained SpatialVLA model for new simulation and real-world setups, where the pre-learned action grids are re-discretized to capture robot-specific spatial action movements of new setups. The superior results from extensive evaluations demonstrate the exceptional in-distribution generalization and out-of-distribution adaptation capability, highlighting the crucial benefit of the proposed spatial-aware representations for generalist robot policy learning. All the details and codes will be open-sourced.

Submission history

From: Delin Qu [view email]
[v1]
Mon, 27 Jan 2025 07:34:33 UTC (9,047 KB)
[v2]
Tue, 28 Jan 2025 09:25:31 UTC (12,618 KB)
[v3]
Fri, 31 Jan 2025 03:45:56 UTC (12,556 KB)
[v4]
Fri, 7 Mar 2025 07:53:04 UTC (12,731 KB)
[v5]
Mon, 19 May 2025 02:40:18 UTC (13,643 KB)



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