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WarpDiffusion: Efficient Diffusion Model for High-Fidelity Virtual Try-on
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Image-based Virtual Try-On (VITON) aims to transfer an in-shop garment image onto a target person. While existing methods focus on warping the garment to fit the body pose, they often overlook the synthesis quality around the garment-skin boundary and realistic effects like wrinkles and shadows on the warped garments. These limitations greatly reduce the realism of the generated results and hinder the practical application of VITON techniques. Leveraging the notable success of diffusion-based models in cross-modal image synthesis, some recent diffusion-based methods have ventured to tackle this issue. However, they tend to either consume a significant amount of training resources or struggle to achieve realistic try-on effects and retain garment details. For efficient and high-fidelity VITON, we propose WarpDiffusion, which bridges the warping-based and diffusion-based paradigms via a novel informative and local garment feature attention mechanism. Specifically, WarpDiffusion incorporates local texture attention to reduce resource consumption and uses a novel auto-mask module that effectively retains only the critical areas of the warped garment while disregarding unrealistic or erroneous portions. Notably, WarpDiffusion can be integrated as a plug-and-play component into existing VITON methodologies, elevating their synthesis quality. Extensive experiments on high-resolution VITON benchmarks and an in-the-wild test set demonstrate the superiority of WarpDiffusion, surpassing state-of-the-art methods both qualitatively and quantitatively.
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Cited by 3 Pith papers
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Incorporating Visual Correspondence into Diffusion Model for Virtual Try-On
SPM-Diff injects flow-warped garment point features into a diffusion model's self-attention to improve detail preservation in virtual try-on.
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DreamFit: Garment-Centric Human Generation via a Lightweight Anything-Dressing Encoder
DreamFit generates human images from a garment reference and text by encoding the reference through LoRA-activated layers of a frozen Stable Diffusion UNet and injecting features with adaptive attention.
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CatV2TON: Taming Diffusion Transformers for Vision-Based Virtual Try-On with Temporal Concatenation
CatV2TON unifies image and video virtual try-on in one diffusion transformer, using temporal garment-person concatenation and clip-based inference with AdaCN for long, consistent try-on videos.
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