Scaling up GANs for Text-to-Image Synthesis
Abstract
The recent success of text-to-image synthesis has taken the world by storm and captured the general public's imagination. From a technical standpoint, it also marked a drastic change in the favored architecture to design generative image models. GANs used to be the de facto choice, with techniques like StyleGAN. With DALL-E 2, auto-regressive and diffusion models became the new standard for large-scale generative models overnight. This rapid shift raises a fundamental question: can we scale up GANs to benefit from large datasets like LAION? We find that naively increasing the capacity of the StyleGAN architecture quickly becomes unstable. We introduce GigaGAN, a new GAN architecture that far exceeds this limit, demonstrating GANs as a viable option for text-to-image synthesis. GigaGAN offers three major advantages. First, it is orders of magnitude faster at inference time, taking only 0.13 seconds to synthesize a 512px image. Second, it can synthesize high-resolution images, for example, 16-megapixel images in 3.66 seconds. Finally, GigaGAN supports various latent space editing applications such as latent interpolation, style mixing, and vector arithmetic operations.
Cite
Text
Kang et al. "Scaling up GANs for Text-to-Image Synthesis." Conference on Computer Vision and Pattern Recognition, 2023. doi:10.1109/CVPR52729.2023.00976Markdown
[Kang et al. "Scaling up GANs for Text-to-Image Synthesis." Conference on Computer Vision and Pattern Recognition, 2023.](https://mlanthology.org/cvpr/2023/kang2023cvpr-scaling/) doi:10.1109/CVPR52729.2023.00976BibTeX
@inproceedings{kang2023cvpr-scaling,
title = {{Scaling up GANs for Text-to-Image Synthesis}},
author = {Kang, Minguk and Zhu, Jun-Yan and Zhang, Richard and Park, Jaesik and Shechtman, Eli and Paris, Sylvain and Park, Taesung},
booktitle = {Conference on Computer Vision and Pattern Recognition},
year = {2023},
pages = {10124-10134},
doi = {10.1109/CVPR52729.2023.00976},
url = {https://mlanthology.org/cvpr/2023/kang2023cvpr-scaling/}
}