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Paper · arXiv 2404.04465

Aligning Diffusion Models by Optimizing Human Utility

Shufan Li, Konstantinos Kallidromitis, Akash Gokul, Yusuke Kato, Kazuki Kozuka

14 upvotesApril 6, 2024arXiv 预印本
AI 摘要

Diffusion-KTO fine-tunes text-to-image diffusion models using per-image binary feedback, enhancing performance in both human and automatic evaluations.

Diffusion-KTOtext-to-image diffusion modelsalignment objectivehuman utilitypairwise preference datareward modelper-image binary feedback signalssupervised fine-tuningDiffusion-DPOPickScoreImageReward

Abstract

We present Diffusion-KTO, a novel approach for aligning text-to-image diffusion models by formulating the alignment objective as the maximization of expected human utility. Since this objective applies to each generation independently, Diffusion-KTO does not require collecting costly pairwise preference data nor training a complex reward model. Instead, our objective requires simple per-image binary feedback signals, e.g. likes or dislikes, which are abundantly available. After fine-tuning using Diffusion-KTO, text-to-image diffusion models exhibit superior performance compared to existing techniques, including supervised fine-tuning and Diffusion-DPO, both in terms of human judgment and automatic evaluation metrics such as PickScore and ImageReward. Overall, Diffusion-KTO unlocks the potential of leveraging readily available per-image binary signals and broadens the applicability of aligning text-to-image diffusion models with human preferences.

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