DiffuserLite: Towards Real-Time Diffusion Planning

Abstract

Diffusion planning has been recognized as an effective decision-making paradigm in various domains. The capability of generating high-quality long-horizon trajectories makes it a promising research direction. However, existing diffusion planning methods suffer from low decision-making frequencies due to the expensive iterative sampling cost. To alleviate this, we introduce DiffuserLite, a super fast and lightweight diffusion planning framework, which employs a planning refinement process (PRP) to generate coarse-to-fine-grained trajectories, significantly reducing the modeling of redundant information and leading to notable increases in decision-making frequency. Our experimental results demonstrate that DiffuserLite achieves a decision-making frequency of $122.2$Hz ($112.7$x faster than predominant frameworks) and reaches state-of-the-art performance on D4RL, Robomimic, and FinRL benchmarks. In addition, DiffuserLite can also serve as a flexible plugin to increase the decision-making frequency of other diffusion planning algorithms, providing a structural design reference for future works. More details and visualizations are available at https://diffuserlite.github.io/.

Cite

Text

Dong et al. "DiffuserLite: Towards Real-Time Diffusion Planning." Neural Information Processing Systems, 2024. doi:10.52202/079017-3895

Markdown

[Dong et al. "DiffuserLite: Towards Real-Time Diffusion Planning." Neural Information Processing Systems, 2024.](https://mlanthology.org/neurips/2024/dong2024neurips-diffuserlite/) doi:10.52202/079017-3895

BibTeX

@inproceedings{dong2024neurips-diffuserlite,
  title     = {{DiffuserLite: Towards Real-Time Diffusion Planning}},
  author    = {Dong, Zibin and Hao, Jianye and Yuan, Yifu and Ni, Fei and Wang, Yitian and Li, Pengyi and Zheng, Yan},
  booktitle = {Neural Information Processing Systems},
  year      = {2024},
  doi       = {10.52202/079017-3895},
  url       = {https://mlanthology.org/neurips/2024/dong2024neurips-diffuserlite/}
}