Integer Discrete Flows and Lossless Compression
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| Publication date | 2020 |
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| Book title | 32nd Conference on Neural Information Processing Systems (NeurIPS 2019) |
| Book subtitle | Vancouver, Canada, 8-14 December 2019 |
| ISBN |
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| Series | Advances in Neural Information Processing Systems |
| Event | 33rd Annual Conference on Neural Information Processing Systems, NeurIPS 2019 |
| Volume | Issue number | 16 |
| Pages (from-to) | 12114-12124 |
| Publisher | San Diego, CA: Neural Information Processing Systems Foundation |
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| Abstract |
Lossless compression methods shorten the expected representation size of data without loss of information, using a statistical model. Flow-based models are attractive in this setting because they admit exact likelihood optimization, which is equivalent to minimizing the expected number of bits per message. However, conventional flows assume continuous data, which may lead to reconstruction errors when quantized for compression. For that reason, we introduce a flow-based generative model for ordinal discrete data called Integer Discrete Flow (IDF): a bijective integer map that can learn rich transformations on high-dimensional data. As building blocks for IDFs, we introduce a flexible transformation layer called integer discrete coupling. Our experiments show that IDFs are competitive with other flow-based generative models. Furthermore, we demonstrate that IDF based compression achieves state-of-the-art lossless compression rates on CIFAR10, ImageNet32, and ImageNet64. To the best of our knowledge, this is the first lossless compression method that uses invertible neural networks.
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| Document type | Conference contribution |
| Note | Running title: 33rd Conference on Neural Information Processing Systems (NeurIPS 2019). - With supplemental file. |
| Language | English |
| Published at | https://papers.nips.cc/paper/2019/hash/9e9a30b74c49d07d8150c8c83b1ccf07-Abstract.html |
| Other links | http://www.proceedings.com/53719.html |
| Downloads |
NeurIPS-2019-integer-discrete-flows-and-lossless-compression-Paper
(Accepted author manuscript)
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