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Decoupled Textual Embeddings for Customized Image Generation

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arxiv 2312.11826 v1 pith:YDYGSQQE submitted 2023-12-19 cs.CV

classification cs.CV
keywords embeddingembeddingsconceptgenerationimagesubjectcustomizedimage-specific
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Customized text-to-image generation, which aims to learn user-specified concepts with a few images, has drawn significant attention recently. However, existing methods usually suffer from overfitting issues and entangle the subject-unrelated information (e.g., background and pose) with the learned concept, limiting the potential to compose concept into new scenes. To address these issues, we propose the DETEX, a novel approach that learns the disentangled concept embedding for flexible customized text-to-image generation. Unlike conventional methods that learn a single concept embedding from the given images, our DETEX represents each image using multiple word embeddings during training, i.e., a learnable image-shared subject embedding and several image-specific subject-unrelated embeddings. To decouple irrelevant attributes (i.e., background and pose) from the subject embedding, we further present several attribute mappers that encode each image as several image-specific subject-unrelated embeddings. To encourage these unrelated embeddings to capture the irrelevant information, we incorporate them with corresponding attribute words and propose a joint training strategy to facilitate the disentanglement. During inference, we only use the subject embedding for image generation, while selectively using image-specific embeddings to retain image-specified attributes. Extensive experiments demonstrate that the subject embedding obtained by our method can faithfully represent the target concept, while showing superior editability compared to the state-of-the-art methods. Our code will be made published available.

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Cited by 1 Pith paper

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  1. Preliminary Explorations with GPT-4o(mni) Native Image Generation

    cs.CV 2025-05 conditional novelty 5.0 of 10

    A qualitative exploration showing GPT-4o image generation excels at stylization, editing, and personalization but struggles with spatial reasoning, knowledge-based accuracy, and temporal prediction.

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