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SIGGRAPH 2026Humans & Hands - Reconstruction

AMOR: Airborne Motion Reconstruction via Homotopy-Aware Trajectory Optimization

Chanha Kim, Jungdam Won

PDF 由论文原始站点提供,PaperCompass 不保存论文文件。DOI 10.1145/3799902.3811070 ↗

摘要

Monocular video–based human mesh recovery (HMR) has made significant progress in recent years, yet existing methods often fail to reconstruct physically plausible motion during highly dynamic airborne movements such as jumping or acrobatics. These failure cases arise from motion blur, rapid orientation changes, and the lack of suitable training data, leading to temporally inconsistent and physically implausible results. We propose a novel method for reconstructing 3D airborne motion by refining inaccurate estimates produced by state-of-the-art HMR systems. Our approach extracts key physical quantities, identifies reliable motion segments based on physical consistency, and connects them using a homotopy-aware trajectory optimization. A global angular momentum constraint is then enforced over the entire motion, and global motion and local poses are jointly optimized under physical and temporal smoothness constraints. Experiments on challenging in-the-wild videos demonstrate that our method produces more physically consistent and temporally coherent airborne motions than existing refinement approaches.