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ZipIR: Latent Pyramid Diffusion Transformer for High-Resolution Image Restoration

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arxiv 2504.08591 v1 pith:7FEJRMAK submitted 2025-04-11 cs.CV

classification cs.CV
keywords diffusionimagelatentmodelszipirrestorationefficiencyhigh-resolution
verification ladder T0 review T1 audit T2 compute T3 formal
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Recent progress in generative models has significantly improved image restoration capabilities, particularly through powerful diffusion models that offer remarkable recovery of semantic details and local fidelity. However, deploying these models at ultra-high resolutions faces a critical trade-off between quality and efficiency due to the computational demands of long-range attention mechanisms. To address this, we introduce ZipIR, a novel framework that enhances efficiency, scalability, and long-range modeling for high-res image restoration. ZipIR employs a highly compressed latent representation that compresses image 32x, effectively reducing the number of spatial tokens, and enabling the use of high-capacity models like the Diffusion Transformer (DiT). Toward this goal, we propose a Latent Pyramid VAE (LP-VAE) design that structures the latent space into sub-bands to ease diffusion training. Trained on full images up to 2K resolution, ZipIR surpasses existing diffusion-based methods, offering unmatched speed and quality in restoring high-resolution images from severely degraded inputs.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. DuSPiT: Dual-Branch Sub-Patch Pixel Diffusion Transformer

    cs.CV 2026-07 conditional novelty 6.0 of 10

    DuSPiT splits pixel diffusion into a compact global-structure branch and a high-capacity subpatch detail branch, reaching ImageNet-512 FID 1.52 at 329 GFLOPs, below JiT-G/32 (1.78).

  2. LPM: Industrial-Scale Generative Video Restoration

    cs.CV 2026-07 conditional novelty 5.0 of 10

    LPM is a two-stage diffusion-based video-restoration system deployed at Kuaishou, claiming industrial-scale use, 45% viewing-time coverage, and 20% bitrate savings at comparable perceptual quality.

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