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SIGGRAPH 2026Volume 45, Number 4, July 2026

ReActor: Reinforcement Learning for Physics-Aware Motion Retargeting

David Müller 0011, Agon Serifi, Sammy Christen, Ruben Grandia, Espen Knoop, Moritz Bächer

PDF 由论文原始站点提供,PaperCompass 不保存论文文件。DOI 10.1145/3811378 ↗

摘要

Retargeting human kinematic reference motion onto a robot's morphology remains a formidable challenge. Existing methods often produce physical inconsistencies, such as foot sliding, self-collisions, or dynamically infeasible motions, which hinder downstream imitation learning. We propose a bilevel optimization framework that jointly adapts reference motions to a robot's morphology while training a tracking policy using reinforcement learning. To make the optimization tractable, we derive an approximate gradient for the upper-level loss. Our framework requires only a sparse set of semantic rigid-body correspondences and eliminates the need for manual tuning by identifying optimal values for a parameterization expressive enough to preserve characteristic motion across different embodiments. Moreover, by integrating retargeting directly with physics simulation, we produce physically plausible motions that facilitate robust imitation learning. We validate our method in simulation and on hardware, demonstrating challenging motions for morphologies that differ significantly from a human, including retargeting onto a quadruped.