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Gradpaint: Gradient-Guided Inpainting with Diffusion Models

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arxiv 2309.09614 v1 pith:QARTVG24 submitted 2023-09-18 cs.CV cs.AIcs.LG

classification cs.CVcs.AIcs.LG
keywords imagediffusionmodelsdenoisinggradpaintguidinginpaintinginput
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Denoising Diffusion Probabilistic Models (DDPMs) have recently achieved remarkable results in conditional and unconditional image generation. The pre-trained models can be adapted without further training to different downstream tasks, by guiding their iterative denoising process at inference time to satisfy additional constraints. For the specific task of image inpainting, the current guiding mechanism relies on copying-and-pasting the known regions from the input image at each denoising step. However, diffusion models are strongly conditioned by the initial random noise, and therefore struggle to harmonize predictions inside the inpainting mask with the real parts of the input image, often producing results with unnatural artifacts. Our method, dubbed GradPaint, steers the generation towards a globally coherent image. At each step in the denoising process, we leverage the model's "denoised image estimation" by calculating a custom loss measuring its coherence with the masked input image. Our guiding mechanism uses the gradient obtained from backpropagating this loss through the diffusion model itself. GradPaint generalizes well to diffusion models trained on various datasets, improving upon current state-of-the-art supervised and unsupervised methods.

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    cs.CV 2024-12 conditional novelty 5.0 of 10

    Sparse depth points injected as test-time guidance into a pretrained monocular depth diffusion model achieve strong zero-shot depth completion across indoor and outdoor scenes.

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