Sam Wiseman
2020
ENGINE: Energy-Based Inference Networks for Non-Autoregressive Machine Translation
Lifu Tu
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Richard Yuanzhe Pang
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Sam Wiseman
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Kevin Gimpel
Proceedings of the 58th Annual Meeting of the Association for Computational Linguistics
We propose to train a non-autoregressive machine translation model to minimize the energy defined by a pretrained autoregressive model. In particular, we view our non-autoregressive translation system as an inference network (Tu and Gimpel, 2018) trained to minimize the autoregressive teacher energy. This contrasts with the popular approach of training a non-autoregressive model on a distilled corpus consisting of the beam-searched outputs of such a teacher model. Our approach, which we call ENGINE (ENerGy-based Inference NEtworks), achieves state-of-the-art non-autoregressive results on the IWSLT 2014 DE-EN and WMT 2016 RO-EN datasets, approaching the performance of autoregressive models.
Discrete Latent Variable Representations for Low-Resource Text Classification
Shuning Jin
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Sam Wiseman
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Karl Stratos
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Karen Livescu
Proceedings of the 58th Annual Meeting of the Association for Computational Linguistics
While much work on deep latent variable models of text uses continuous latent variables, discrete latent variables are interesting because they are more interpretable and typically more space efficient. We consider several approaches to learning discrete latent variable models for text in the case where exact marginalization over these variables is intractable. We compare the performance of the learned representations as features for low-resource document and sentence classification. Our best models outperform the previous best reported results with continuous representations in these low-resource settings, while learning significantly more compressed representations. Interestingly, we find that an amortized variant of Hard EM performs particularly well in the lowest-resource regimes.
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Co-authors
- Lifu Tu 1
- Richard Yuanzhe Pang 1
- Kevin Gimpel 1
- Shuning Jin 1
- Karl Stratos 1
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Venues
- ACL2