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SpikeCodec: An End-to-end Learned Compression Framework for Spiking Camera

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arxiv 2306.14108 v1 pith:7A4CKU6S submitted 2023-06-25 cs.CV eess.IV

classification cs.CVeess.IV
keywords spikecompressioncameradataimaginglearnedcharacteristicframework
verification ladder T0 review T1 audit T2 compute T3 formal
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Recently, the bio-inspired spike camera with continuous motion recording capability has attracted tremendous attention due to its ultra high temporal resolution imaging characteristic. Such imaging feature results in huge data storage and transmission burden compared to that of traditional camera, raising severe challenge and imminent necessity in compression for spike camera captured content. Existing lossy data compression methods could not be applied for compressing spike streams efficiently due to integrate-and-fire characteristic and binarized data structure. Considering the imaging principle and information fidelity of spike cameras, we introduce an effective and robust representation of spike streams. Based on this representation, we propose a novel learned spike compression framework using scene recovery, variational auto-encoder plus spike simulator. To our knowledge, it is the first data-trained model for efficient and robust spike stream compression. Extensive experimental results show that our method outperforms the conventional and learning-based codecs, contributing a strong baseline for learned spike data compression.

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Cited by 1 Pith paper

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

  1. SPACT18: Spiking Human Action Recognition Benchmark Dataset with Complementary RGB and Thermal Modalities

    cs.CV 2025-07 conditional novelty 6.0 of 10

    SPACT18 is claimed to be the first action recognition dataset captured with a spike camera, paired with synchronized RGB and thermal video.

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