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Deep Lossy Plus Residual Coding for Lossless and Near-lossless Image Compression

About

Lossless and near-lossless image compression is of paramount importance to professional users in many technical fields, such as medicine, remote sensing, precision engineering and scientific research. But despite rapidly growing research interests in learning-based image compression, no published method offers both lossless and near-lossless modes. In this paper, we propose a unified and powerful deep lossy plus residual (DLPR) coding framework for both lossless and near-lossless image compression. In the lossless mode, the DLPR coding system first performs lossy compression and then lossless coding of residuals. We solve the joint lossy and residual compression problem in the approach of VAEs, and add autoregressive context modeling of the residuals to enhance lossless compression performance. In the near-lossless mode, we quantize the original residuals to satisfy a given $\ell_\infty$ error bound, and propose a scalable near-lossless compression scheme that works for variable $\ell_\infty$ bounds instead of training multiple networks. To expedite the DLPR coding, we increase the degree of algorithm parallelization by a novel design of coding context, and accelerate the entropy coding with adaptive residual interval. Experimental results demonstrate that the DLPR coding system achieves both the state-of-the-art lossless and near-lossless image compression performance with competitive coding speed.

Yuanchao Bai, Xianming Liu, Kai Wang, Xiangyang Ji, Xiaolin Wu, Wen Gao• 2022

Related benchmarks

TaskDatasetResultRank
Lossless CompressionActiveCloth (cross-dataset)
Bits/Byte1.453
18
Lossless CompressionObjectFolder cross-dataset 2.0
Bits/Byte3.852
18
Lossless CompressionSSVTP
Bits per Byte1.539
17
Lossless CompressionYCB-Slide
Bits per Byte1.503
17
Lossless CompressionObjTac
Bits per Byte0.522
17
Lossless CompressionTouchandGo
Bits/Byte1.082
17
Lossless CompressionObjectFolder
Bits/Byte3.774
17
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