Towards HDR and HFR Video from Rolling-Mixed-Bit Spikings
Yakun Chang, Yeliduosi Xiaokaiti, Yujia Liu, Bin Fan, Zhaojun Huang, Tiejun Huang, Boxin Shi
Abstract
The spiking cameras offer the benefits of high dynamic range (HDR), high temporal resolution, and low data redundancy. However, reconstructing HDR videos in high-speed conditions using single-bit spikings presents challenges due to the limited bit depth. Increasing the bit depth of the spikings is advantageous for boosting HDR performance, but the readout efficiency will be decreased, which is unfavorable for achieving a high frame rate (HFR) video. To address these challenges, we propose a readout mechanism to obtain rolling-mixed-bit (RMB) spikings, which involves interleaving multi-bit spikings within the single-bit spikings in a rolling manner, thereby combining the characteristics of high bit depth and efficient readout. Furthermore, we introduce RMB-Net for reconstructing HDR and HFR videos. RMB-Net comprises a cross-bit attention block for fusing mixed-bit spikings and a cross-time attention block for achieving temporal fusion. Extensive experiments conducted on synthetic and real-synthetic data demonstrate the superiority of our method. For instance, pure 3-bit spikings result in 3 times of data volume, whereas our method achieves comparable performance with less than 2% increase in data volume.
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Install the CLIlune papers fulltext 632e8a4f-4603-4d8e-92ce-32a46a968ca4Cited by top-tier papers7
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- Robust Noise Modeling for Spike Camera via Time-Interval Quantification and Spike-DSLR Multimodal Dataset in Low-Light ImagingYue Cao, Sizhao Li, Liguo ZhangAAAI 2026
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Builds on12
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- Inverting a Rolling Shutter Camera: Bring Rolling Shutter Images to High Framerate Global Shutter VideoBin Fan, Yuchao DaiICCV 2021 · 37 citations
- Context-Aware Video Reconstruction for Rolling Shutter CamerasBin Fan, Yuchao Dai, Zhiyuan Zhang, Qi Liu et al.CVPR 2022 · 23 citations
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