DiffuseBot: Breeding Soft Robots with Physics-Augmented Generative Diffusion Models
Abstract
Nature evolves creatures with a high complexity of morphological and behavioral intelligence, meanwhile computational methods lag in approaching that diversity and efficacy. Co-optimization of artificial creatures' morphology and control in silico shows promise for applications in physical soft robotics and virtual character creation; such approaches, however, require developing new learning algorithms that can reason about function atop pure structure. In this paper, we present DiffuseBot, a physics-augmented diffusion model that generates soft robot morphologies capable of excelling in a wide spectrum of tasks. \name bridges the gap between virtually generated content and physical utility by (i) augmenting the diffusion process with a physical dynamical simulation which provides a certificate of performance, and (ii) introducing a co-design procedure that jointly optimizes physical design and control by leveraging information about physical sensitivities from differentiable simulation. We showcase a range of simulated and fabricated robots along with their capabilities. Check our website: https://diffusebot.github.io/
Cite
Text
Wang et al. "DiffuseBot: Breeding Soft Robots with Physics-Augmented Generative Diffusion Models." Neural Information Processing Systems, 2023.Markdown
[Wang et al. "DiffuseBot: Breeding Soft Robots with Physics-Augmented Generative Diffusion Models." Neural Information Processing Systems, 2023.](https://mlanthology.org/neurips/2023/wang2023neurips-diffusebot/)BibTeX
@inproceedings{wang2023neurips-diffusebot,
title = {{DiffuseBot: Breeding Soft Robots with Physics-Augmented Generative Diffusion Models}},
author = {Wang, Tsun-Hsuan Johnson and Zheng, Juntian and Ma, Pingchuan and Du, Yilun and Kim, Byungchul and Spielberg, Andrew and Tenenbaum, Josh and Gan, Chuang and Rus, Daniela},
booktitle = {Neural Information Processing Systems},
year = {2023},
url = {https://mlanthology.org/neurips/2023/wang2023neurips-diffusebot/}
}