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Controlling Text-to-Image Diffusion by Orthogonal Finetuning

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arxiv 2306.07280 v3 pith:ADE4IIPI submitted 2023-06-12 cs.CV cs.AIcs.GRcs.LG

Controlling Text-to-Image Diffusion by Orthogonal Finetuning

classification cs.CV cs.AIcs.GRcs.LG
keywords finetuningtext-to-imagediffusiongenerationmodelsimagesorthogonaltasks
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Large text-to-image diffusion models have impressive capabilities in generating photorealistic images from text prompts. How to effectively guide or control these powerful models to perform different downstream tasks becomes an important open problem. To tackle this challenge, we introduce a principled finetuning method -- Orthogonal Finetuning (OFT), for adapting text-to-image diffusion models to downstream tasks. Unlike existing methods, OFT can provably preserve hyperspherical energy which characterizes the pairwise neuron relationship on the unit hypersphere. We find that this property is crucial for preserving the semantic generation ability of text-to-image diffusion models. To improve finetuning stability, we further propose Constrained Orthogonal Finetuning (COFT) which imposes an additional radius constraint to the hypersphere. Specifically, we consider two important finetuning text-to-image tasks: subject-driven generation where the goal is to generate subject-specific images given a few images of a subject and a text prompt, and controllable generation where the goal is to enable the model to take in additional control signals. We empirically show that our OFT framework outperforms existing methods in generation quality and convergence speed.

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Cited by 1 Pith paper

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    cs.CL 2025-09 reject novelty 5.0

    PEFT adapters trained on high-resource summarization domains can improve Llama-3-8B's summaries on unseen domains, but the reported gains are weakened by test-set selection and missing significance tests.