Embodied-R: Collaborative Framework for Activating Embodied Spatial Reasoning in Foundation Models via Reinforcement Learning
Baining Zhao, Ziyou Wang, Jianjie Fang, Chen Gao, Fanhang Man, Jinqiang Cui, Xin Wang, Xinlei Chen, Yong Li, Wenwu Zhu
Abstract
Humans can perceive and reason about spatial relationships from sequential visual observations, such as egocentric video streams. However, how pretrained models acquire such abilities, especially high-level reasoning, remains unclear. This paper introduces Embodied-R, a collaborative framework combining large-scale Vision-Language Models (VLMs) for perception and small-scale Language Models (LMs) for reasoning. Using Reinforcement Learning (RL) with a novel reward system considering think-answer logical consistency, the model achieves slow-thinking capabilities with limited computational resources. After training on only 5k embodied video samples, Embodied-R with a 3B LM matches state-of-the-art multimodal reasoning models (OpenAI-o1, Gemini-2.5-pro) on both in-distribution and out-of-distribution embodied spatial reasoning tasks. Embodied-R also exhibits emergent thinking patterns such as systematic analysis and contextual integration. We further explore research questions including response length, training on VLM, strategies for reward design, and differences in model generalization after SFT (Supervised Fine-Tuning) and RL training. The project page is available at: https://embodiedcity.github.io/Embodied-R/.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext ad5c0628-1d87-4a3a-bffb-5b8ab5d60c53Cited by top-tier papers14
- Spatial Mental Modeling from Limited ViewsQineng Wang, Baiqiao Yin, Pingyue Zhang, Jianshu Zhang et al.ICLR 2026 · 92 citations
- Grounded Reinforcement Learning for Visual ReasoningGabriel Sarch, Snigdha Saha, Naitik Khandelwal, Ayush Jain et al.NeurIPS 2025 · 90 citations
- Look-Back: Implicit Visual Re-focusing in MLLM ReasoningShuo Yang, Yuwei Niu, Yuyang Liu, Yang Ye et al.AAAI 2026 · 32 citations
- Balanced Token Pruning: Accelerating Vision Language Models Beyond Local OptimizationKaiyuan Li, Xiaoyue Chen, Chen Gao, Yong Li et al.NeurIPS 2025 · 26 citations
- ManipLVM-R1: Reinforcement Learning for Reasoning in Embodied Manipulation with Large Vision-Language ModelsZirui Song, Guangxian Ouyang, Mingzhe Li, Yuheng Ji et al.AAAI 2026 · 21 citations
Builds on21
- Chain-of-Thought Prompting Elicits Reasoning in Large Language ModelsJason Wei, Xuezhi Wang, Dale Schuurmans, Maarten Bosma et al.NeurIPS 2022 · 22,562 citations
- PaLM-E: An Embodied Multimodal Language ModelDanny Driess, Fei Xia, Mehdi S. M. Sajjadi, Corey Lynch et al.ICML 2023 · 2,601 citations
- Visual-RFT: Visual Reinforcement Fine-TuningZiyu Liu, Zeyi Sun, Yuhang Zang, Xiaoyi Dong et al.ICCV 2025 · 563 citations
- ReST-MCTS*: LLM Self-Training via Process Reward Guided Tree SearchDan Zhang, Sining Zhoubian, Ziniu Hu, Yisong Yue et al.NeurIPS 2024 · 527 citations
- Ego4D: Around the World in 3, 000 Hours of Egocentric VideoKristen Grauman, Andrew Westbury, Eugene Byrne, Zachary Chavis et al.CVPR 2022 · 525 citations
Related papers
- OpenVLThinker: Complex Vision-Language Reasoning via Iterative SFT-RL CyclesYihe Deng, Hritik Bansal, Fan Yin, Nanyun Peng et al.NeurIPS 2025 · 61 citations
- Scaling RL to Long VideosYukang Chen, Wei Huang, Baifeng Shi, Qinghao Hu et al.NeurIPS 2025 · 91 citations
- EgoThinker: Unveiling Egocentric Reasoning with Spatio-Temporal CoTBaoqi Pei, Yifei Huang, Jilan Xu, Yuping He et al.NeurIPS 2025 · 21 citations
- SpatialReasoner: Towards Explicit and Generalizable 3D Spatial ReasoningWufei Ma, Yu-Cheng Chou, Qihao Liu, Xingrui Wang et al.NeurIPS 2025 · 77 citations
- Open Vision Reasoner: Transferring Linguistic Cognitive Behavior for Visual ReasoningYana Wei, Liang Zhao, Jianjian Sun, Kangheng Lin et al.NeurIPS 2025 · 39 citations
