DiffStereo: High-Frequency Aware Diffusion Model for Stereo Image Restoration
Huiyun Cao, Yuan Shi, Bin Xia, Xiaoyu Jin, Wenming Yang

TL;DR
DiffStereo introduces a high-frequency aware diffusion model for stereo image restoration, effectively preserving textures and details while reducing computational costs, outperforming existing methods in multiple restoration tasks.
Contribution
This is the first application of diffusion models to stereo image restoration, leveraging high-frequency representations and a novel integration scheme for improved performance.
Findings
Achieves higher reconstruction accuracy in stereo super-resolution.
Provides better perceptual quality in stereo deblurring.
Excels in low-light stereo image enhancement.
Abstract
Diffusion models (DMs) have achieved promising performance in image restoration but haven't been explored for stereo images. The application of DM in stereo image restoration is confronted with a series of challenges. The need to reconstruct two images exacerbates DM's computational cost. Additionally, existing latent DMs usually focus on semantic information and remove high-frequency details as redundancy during latent compression, which is precisely what matters for image restoration. To address the above problems, we propose a high-frequency aware diffusion model, DiffStereo for stereo image restoration as the first attempt at DM in this domain. Specifically, DiffStereo first learns latent high-frequency representations (LHFR) of HQ images. DM is then trained in the learned space to estimate LHFR for stereo images, which are fused into a transformer-based stereo image restoration…
Peer Reviews
No public reviews on file for this paper yet. If you reviewed it on a platform where reviews are public (OpenReview, ICLR, NeurIPS, ICML), you can paste yours below so the community can read it here.
Videos
No videos yet. Explain this paper in a talk, walkthrough, or lecture? Add one.
Taxonomy
TopicsImage and Signal Denoising Methods · Advanced Image Processing Techniques · Photoacoustic and Ultrasonic Imaging
MethodsAttentive Walk-Aggregating Graph Neural Network · Diffusion · Focus
