EnvPoser: Environment-aware Realistic Human Motion Estimation from Sparse Observations with Uncertainty Modeling
Songpengcheng Xia, Yu Zhang, Zhuo Su, Xiaozheng Zheng, Zheng Lv, Guidong Wang, Yongjie Zhang, Qi Wu, Lei Chu, Ling Pei
Abstract
Estimating full-body motion using the tracking signals of head and hands from VR devices holds great potential for various applications. However, the sparsity and unique distribution of observations present a significant challenge, resulting in an ill-posed problem with multiple feasible solutions (i.e., hypotheses). This amplifies uncertainty and ambiguity in full-body motion estimation, especially for the lower-body joints. Therefore, we propose a new method, EnvPoser, that employs a two-stage framework to perform full-body motion estimation using sparse tracking signals and pre-scanned environment from VR devices. EnvPoser models the multi-hypothesis nature of human motion through an uncertainty-aware estimation module in the first stage. In the second stage, we refine these multi-hypothesis estimates by integrating semantic and geometric environmental constraints, ensuring that the final motion estimation aligns realistically with both the environmental context and physical interactions.Qualitative and quantitative experiments on two public datasets demonstrate that our method achieves state-of-the-art performance, highlighting significant improvements in human motion estimation within motion-environment interaction scenarios. Project page: https://xspc.github.io/EnvPoser/.
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 b03e23f8-48f8-4d3a-be2d-46592da07491Cited by top-tier papers5
- VolumetricSMPL: A Neural Volumetric Body Model for Efficient Interactions, Contacts, and CollisionsMarko Mihajlovic, Siwei Zhang, Gen Li, Kaifeng Zhao et al.ICCV 2025 · 2 citations
- Egocentric Visibility-Aware Human Pose EstimationPeng Dai, Yu Zhang, Feng Yiqiang, ZhenFan Fan et al.CVPR 2026 · 1 citation
- IMU-HOI: A Symbiotic Framework for Coherent Human-Object Interaction and Motion Capture via Contact-Conscious Inertial FusionLizhou Lin, Songpengcheng Xia, Zengyuan Lai, Lan Sun et al.CVPR 2026 · 1 citation
- Bézier Degradation Modeling for LiDAR-based Human Motion CaptureXiaoqi An, Lin Zhao, Jun Li, Chen Gong et al.CVPR 2026
- FisherPoser: Human Motion Estimation from Sparse Observations with Hierarchical Region-Wise Fisher-Matrix Uncertainty ModelingSongpengcheng Xia, Qingyu Zhang, Zhuo Su, Jiarui Yang et al.CVPR 2026
Builds on39
- Swin Transformer V2: Scaling Up Capacity and ResolutionZe Liu, Han Hu, Yutong Lin, Zhuliang Yao et al.CVPR 2022 · 2,138 citations
- AMASS: Archive of Motion Capture As Surface ShapesNaureen Mahmood, Nima Ghorbani, Nikolaus F. Troje, Gerard Pons-Moll et al.ICCV 2019 · 1,784 citations
- MHFormer: Multi-Hypothesis Transformer for 3D Human Pose EstimationWenhao Li, Hong Liu, Hao Tang, Pichao Wang et al.CVPR 2022 · 403 citations
- Resolving 3D Human Pose Ambiguities With 3D Scene ConstraintsMohamed Hassan, Vasileios Choutas, Dimitrios Tzionas, Michael J. BlackICCV 2019 · 384 citations
- TransPose: real-time 3D human translation and pose estimation with six inertial sensorsXinyu Yi, Yuxiao Zhou, Feng XuSIGGRAPH 2021 · 200 citations
Related papers
- HMD-Poser: On-Device Real-time Human Motion Tracking from Scalable Sparse ObservationsPeng Dai, Yang Zhang, Tao Liu, Zhen Fan et al.CVPR 2024
- EgoPoseVR: Spatiotemporal Multi-Modal Reasoning for Egocentric Full-Body Pose in Virtual RealityHaojie Cheng, Shaun Jing Heng Ong, Shaoyu Cai, Aiden Tat Yang Koh et al.IEEE VR 2026 · 1 citation
- A Unified Diffusion Framework for Scene-aware Human Motion Estimation from Sparse SignalsJiangnan Tang, Jingya Wang, Kaiyang Ji, Lan Xu et al.CVPR 2024 · 6 citations
- Full-Body Motion Reconstruction with Sparse Sensing from Graph PerspectiveFeiyu Yao, Zongkai Wu, Li YiAAAI 2024 · 4 citations
- Realistic Full-Body Tracking from Sparse Observations via Joint-Level ModelingXiaozheng Zheng, Zhuo Su, Chao Wen, Zhou Xue et al.ICCV 2023 · 57 citations
