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GRAF: Generative Radiance Fields for 3D-Aware Image Synthesis

About

While 2D generative adversarial networks have enabled high-resolution image synthesis, they largely lack an understanding of the 3D world and the image formation process. Thus, they do not provide precise control over camera viewpoint or object pose. To address this problem, several recent approaches leverage intermediate voxel-based representations in combination with differentiable rendering. However, existing methods either produce low image resolution or fall short in disentangling camera and scene properties, e.g., the object identity may vary with the viewpoint. In this paper, we propose a generative model for radiance fields which have recently proven successful for novel view synthesis of a single scene. In contrast to voxel-based representations, radiance fields are not confined to a coarse discretization of the 3D space, yet allow for disentangling camera and scene properties while degrading gracefully in the presence of reconstruction ambiguity. By introducing a multi-scale patch-based discriminator, we demonstrate synthesis of high-resolution images while training our model from unposed 2D images alone. We systematically analyze our approach on several challenging synthetic and real-world datasets. Our experiments reveal that radiance fields are a powerful representation for generative image synthesis, leading to 3D consistent models that render with high fidelity.

Katja Schwarz, Yiyi Liao, Michael Niemeyer, Andreas Geiger• 2020

Related benchmarks

TaskDatasetResultRank
Unconditional image synthesisFFHQ 256x256 (test)
FID71
31
Image GenerationFFHQ 256x256 (train)
FID73
20
Image GenerationFaces
FID35
18
Image SynthesisFFHQ
FID71
16
Image GenerationCelebA 128x128 (test)
FID39.7
14
RenderingFFHQ
Total Rendering Time (ms)219
13
Image GenerationCars
FID41
12
Surface ReconstructionBFM (test)
SIDE1.857
12
Unconditional image synthesisAFHQ 256x256 (test)
FID121
12
3D-aware Image SynthesisFFHQ
FID25.36
10
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