Pith. sign in

C3: High-performance and low-complexity neural compression from a single image or video

1 Pith paper cite this work. Polarity classification is still indexing.

1 Pith paper citing it
abstract

Most neural compression models are trained on large datasets of images or videos in order to generalize to unseen data. Such generalization typically requires large and expressive architectures with a high decoding complexity. Here we introduce C3, a neural compression method with strong rate-distortion (RD) performance that instead overfits a small model to each image or video separately. The resulting decoding complexity of C3 can be an order of magnitude lower than neural baselines with similar RD performance. C3 builds on COOL-CHIC (Ladune et al.) and makes several simple and effective improvements for images. We further develop new methodology to apply C3 to videos. On the CLIC2020 image benchmark, we match the RD performance of VTM, the reference implementation of the H.266 codec, with less than 3k MACs/pixel for decoding. On the UVG video benchmark, we match the RD performance of the Video Compression Transformer (Mentzer et al.), a well-established neural video codec, with less than 5k MACs/pixel for decoding.

citation-role summary

background 1

citation-polarity summary

fields

eess.IV 1

years

2025 1

verdicts

CONDITIONAL 1

roles

background 1

polarities

unclear 1

representative citing papers

Neural Video Compression with Context Modulation

eess.IV · 2025-05-20 · conditional · novelty 6.0

DCMVC modulates the propagated temporal context with an additional oriented context from the reference frame, reporting 10.1 percent bitrate savings over DCVC-FM and 22.7 percent over VVC on standard test sets.

citing papers explorer

Showing 1 of 1 citing paper.

  • Neural Video Compression with Context Modulation eess.IV · 2025-05-20 · conditional · none · ref 24 · internal anchor

    DCMVC modulates the propagated temporal context with an additional oriented context from the reference frame, reporting 10.1 percent bitrate savings over DCVC-FM and 22.7 percent over VVC on standard test sets.