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SpikeReveal: Unlocking Temporal Sequences from Real Blurry Inputs with Spike Streams

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arxiv 2403.09486 v5 pith:M7COTAEF submitted 2024-03-14 cs.CV

classification cs.CV
keywords imagesspikeblurrydeblurringframeworkmotionsequencesdata
verification ladder T0 review T1 audit T2 compute T3 formal

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Reconstructing a sequence of sharp images from the blurry input is crucial for enhancing our insights into the captured scene and poses a significant challenge due to the limited temporal features embedded in the image. Spike cameras, sampling at rates up to 40,000 Hz, have proven effective in capturing motion features and beneficial for solving this ill-posed problem. Nonetheless, existing methods fall into the supervised learning paradigm, which suffers from notable performance degradation when applied to real-world scenarios that diverge from the synthetic training data domain. Moreover, the quality of reconstructed images is capped by the generated images based on motion analysis interpolation, which inherently differs from the actual scene, affecting the generalization ability of these methods in real high-speed scenarios. To address these challenges, we propose the first self-supervised framework for the task of spike-guided motion deblurring. Our approach begins with the formulation of a spike-guided deblurring model that explores the theoretical relationships among spike streams, blurry images, and their corresponding sharp sequences. We subsequently develop a self-supervised cascaded framework to alleviate the issues of spike noise and spatial-resolution mismatching encountered in the deblurring model. With knowledge distillation and re-blurring loss, we further design a lightweight deblur network to generate high-quality sequences with brightness and texture consistency with the original input. Quantitative and qualitative experiments conducted on our real-world and synthetic datasets with spikes validate the superior generalization of the proposed framework. Our code, data and trained models will be available at \url{https://github.com/chenkang455/S-SDM}.

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  1. Rethinking High-speed Image Reconstruction Framework with Spike Camera

    cs.CV 2025-01 conditional novelty 6.0 of 10

    SpikeCLIP reconstructs low-light spike-camera images by aligning outputs with CLIP class labels and prompts learned from NIQE-selected high-quality images, reporting state-of-the-art no-reference quality scores on U-C...

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