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Discrete Noise Inversion for Next-scale Autoregressive Text-based Image Editing

Computer Vision and Pattern Recognition 2025-09-04 v2

Abstract

Visual autoregressive models (VAR) have recently emerged as a promising class of generative models, achieving performance comparable to diffusion models in text-to-image generation tasks. While conditional generation has been widely explored, the ability to perform prompt-guided image editing without additional training is equally critical, as it supports numerous practical real-world applications. This paper investigates the text-to-image editing capabilities of VAR by introducing Visual AutoRegressive Inverse Noise (VARIN), the first noise inversion-based editing technique designed explicitly for VAR models. VARIN leverages a novel pseudo-inverse function for argmax sampling, named Location-aware Argmax Inversion (LAI), to generate inverse Gumbel noises. These inverse noises enable precise reconstruction of the source image and facilitate targeted, controllable edits aligned with textual prompts. Extensive experiments demonstrate that VARIN effectively modifies source images according to specified prompts while significantly preserving the original background and structural details, thus validating its efficacy as a practical editing approach.

Keywords

Cite

@article{arxiv.2509.01984,
  title  = {Discrete Noise Inversion for Next-scale Autoregressive Text-based Image Editing},
  author = {Quan Dao and Xiaoxiao He and Ligong Han and Ngan Hoai Nguyen and Amin Heyrani Nobar and Faez Ahmed and Han Zhang and Viet Anh Nguyen and Dimitris Metaxas},
  journal= {arXiv preprint arXiv:2509.01984},
  year   = {2025}
}

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R2 v1 2026-07-01T05:16:42.405Z