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LiteVAE: Lightweight and Efficient Variational Autoencoders for Latent Diffusion Models

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Advances in latent diffusion models (LDMs) have revolutionized high-resolution image generation, but the design space of the autoencoder that is central to these systems remains underexplored. In this paper, we introduce LiteVAE, a new autoencoder design for LDMs, which leverages the 2D discrete wavelet transform to enhance scalability and computational efficiency over standard variational autoencoders (VAEs) with no sacrifice in output quality. We investigate the training methodologies and the decoder architecture of LiteVAE and propose several enhancements that improve the training dynamics and reconstruction quality. Our base LiteVAE model matches the quality of the established VAEs in current LDMs with a six-fold reduction in encoder parameters, leading to faster training and lower GPU memory requirements, while our larger model outperforms VAEs of comparable complexity across all evaluated metrics (rFID, LPIPS, PSNR, and SSIM).

Seyedmorteza Sadat, Jakob Buhmann, Derek Bradley, Otmar Hilliges, Romann M. Weber• 2024

Related benchmarks

TaskDatasetResultRank
Image ReconstructionImageNet 256x256
rFID0.23
93
Image ReconstructionFFHQ 256x256
PSNR28.33
5
Image ReconstructionImageNet 128
rFID0.94
4
Image GenerationFFHQ 256x256 30 (test)
FID8.03
2
Image GenerationCelebA-HQ 256x256 29 (test)
FID5.73
2
Image ReconstructionFFHQ 128
rFID0.74
2
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