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Updated: Aug 13, 2026

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Real-Time Proxy-Control of Re-Parameterized Peripheral Signals using a Close-Loop Interface
Published on: May 8, 2021
MulSMo: Multimodal Stylized Motion Generation by Bidirectional Control Flow
Summary
This study introduces a novel bidirectional control flow for stylized motion generation, improving style-content integration. The method enables flexible multimodal style control and significantly outperforms existing approaches.
Area of Science:
- Computer Vision
- Artificial Intelligence
- Machine Learning
Background:
- Generating stylized motion sequences requires balancing content and style.
- Existing methods often suffer from style-content conflicts due to unidirectional information flow.
Purpose of the Study:
- To develop a novel method for stylized motion generation with improved style-content integration.
- To enable flexible multimodal control over motion generation.
- To enhance the performance and dynamics preservation in stylized motion synthesis.
Main Methods:
- Implemented a bidirectional control flow between style and content information.
- Introduced contrastive learning for extending stylized motion generation to text and image modalities.
- Advanced motion diffusion models to motion-aligned temporal latent diffusion using a novel motion VAE (Variational Autoencoder).
Main Results:
- The proposed method significantly outperforms previous approaches across various datasets.
- Demonstrated successful alleviation of style-content collisions and better preservation of style dynamics.
- Enabled effective multimodal signal control for stylized motion generation.
Conclusions:
- The bidirectional control flow effectively integrates style and content in motion generation.
- Multimodal control enhances the flexibility and applicability of stylized motion synthesis.
- The novel motion VAE and diffusion approach achieve state-of-the-art performance.
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