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CoMo: Controllable Motion Generation through Language Guided Pose Code Editing

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Text-to-motion models excel at efficient human motion generation, but existing approaches lack fine-grained controllability over the generation process. Consequently, modifying subtle postures within a motion or inserting new actions at specific moments remains a challenge, limiting the applicability of these methods in diverse scenarios. In light of these challenges, we introduce CoMo, a Controllable Motion generation model, adept at accurately generating and editing motions by leveraging the knowledge priors of large language models (LLMs). Specifically, CoMo decomposes motions into discrete and semantically meaningful pose codes, with each code encapsulating the semantics of a body part, representing elementary information such as "left knee slightly bent". Given textual inputs, CoMo autoregressively generates sequences of pose codes, which are then decoded into 3D motions. Leveraging pose codes as interpretable representations, an LLM can directly intervene in motion editing by adjusting the pose codes according to editing instructions. Experiments demonstrate that CoMo achieves competitive performance in motion generation compared to state-of-the-art models while, in human studies, CoMo substantially surpasses previous work in motion editing abilities.

Yiming Huang, Weilin Wan, Yue Yang, Chris Callison-Burch, Mark Yatskar, Lingjie Liu• 2024

Related benchmarks

TaskDatasetResultRank
Text-to-motion generationHumanML3D (test)
FID0.262
481
Text-to-motion generationKIT-ML (test)
FID0.254
189
Text-driven Motion GenerationHumanML3D (test)
R-Precision@150.2
54
Text-to-motion generationHumanML3D 1 (test)
R-Precision (Top 1)0.508
32
Text-to-Motion Generation (Kinematic Representation)HumanML3D Kinematic Representation (test)
R-Precision@10.502
19
Text-to-motion generationKIT-ML 1.0 (test)
R-Precision Top 142.2
14
Text-to-motion generationLaban Benchmark
R@30.176
11
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