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DeepZip: Lossless Data Compression using Recurrent Neural Networks

About

Sequential data is being generated at an unprecedented pace in various forms, including text and genomic data. This creates the need for efficient compression mechanisms to enable better storage, transmission and processing of such data. To solve this problem, many of the existing compressors attempt to learn models for the data and perform prediction-based compression. Since neural networks are known as universal function approximators with the capability to learn arbitrarily complex mappings, and in practice show excellent performance in prediction tasks, we explore and devise methods to compress sequential data using neural network predictors. We combine recurrent neural network predictors with an arithmetic coder and losslessly compress a variety of synthetic, text and genomic datasets. The proposed compressor outperforms Gzip on the real datasets and achieves near-optimal compression for the synthetic datasets. The results also help understand why and where neural networks are good alternatives for traditional finite context models

Mohit Goyal, Kedar Tatwawadi, Shubham Chandak, Idoia Ochoa• 2018

Related benchmarks

TaskDatasetResultRank
Lossless Genomics Data CompressionMoGu
Compression Ratio (bits/base)1.65
18
Lossless Genomics Data CompressionAcSc
Compression Ratio (bits/base)1.868
18
Lossless Genomics Data CompressionDrMe
Compression Ratio (bits/base)1.916
18
Lossless Genomics Data CompressionGaGa
Compression Ratio (bits/base)1.862
18
Lossless Genomics Data CompressionTaGu
Compression Ratio (bits/base)1.851
18
Lossless Genomics Data CompressionGenomics Dataset Suite Aggregate
Avg Compression Ratio (bits/base)1.889
18
Lossless Genomics Data CompressionWaMe
Compression Ratio (bits/base)2.034
18
Lossless Genomics Data CompressionPlFa
Compression Ratio (bits/base)1.901
18
Lossless Genomics Data CompressionSnSt
Compression Ratio (bits/base)1.982
18
Lossless Genomics Data CompressionArTh
Compression Ratio (bits/base)1.935
18
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