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DiffColor: Toward High Fidelity Text-Guided Image Colorization with Diffusion Models

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arxiv 2308.01655 v1 pith:G77R5TIK submitted 2023-08-03 cs.CV

DiffColor: Toward High Fidelity Text-Guided Image Colorization with Diffusion Models

classification cs.CV
keywords colorizationdiffcolorimagecolorcolorsdiffusionmethodprompt
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Recent data-driven image colorization methods have enabled automatic or reference-based colorization, while still suffering from unsatisfactory and inaccurate object-level color control. To address these issues, we propose a new method called DiffColor that leverages the power of pre-trained diffusion models to recover vivid colors conditioned on a prompt text, without any additional inputs. DiffColor mainly contains two stages: colorization with generative color prior and in-context controllable colorization. Specifically, we first fine-tune a pre-trained text-to-image model to generate colorized images using a CLIP-based contrastive loss. Then we try to obtain an optimized text embedding aligning the colorized image and the text prompt, and a fine-tuned diffusion model enabling high-quality image reconstruction. Our method can produce vivid and diverse colors with a few iterations, and keep the structure and background intact while having colors well-aligned with the target language guidance. Moreover, our method allows for in-context colorization, i.e., producing different colorization results by modifying prompt texts without any fine-tuning, and can achieve object-level controllable colorization results. Extensive experiments and user studies demonstrate that DiffColor outperforms previous works in terms of visual quality, color fidelity, and diversity of colorization options.

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Cited by 1 Pith paper

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  1. Multimodal Image Colorization: Quantifying the Impact of Text-Conditioned Guidance on Grayscale-to-Color Translation

    cs.GR 2026-06 unverdicted novelty 4.0

    Text conditioning improves PSNR by ~5.7%, SSIM by ~1.4%, colorfulness by up to 36.6%, and reduces LPIPS by ~9.5% across U-Net and Stable Diffusion colorization models.