Computer Science > Computation and Language
[Submitted on 10 Oct 2023 (v1), last revised 11 Jul 2024 (this version, v4)]
Title:Quality-Aware Translation Models: Efficient Generation and Quality Estimation in a Single Model
View PDF HTML (experimental)Abstract:Maximum-a-posteriori (MAP) decoding is the most widely used decoding strategy for neural machine translation (NMT) models. The underlying assumption is that model probability correlates well with human judgment, with better translations getting assigned a higher score by the model. However, research has shown that this assumption does not always hold, and generation quality can be improved by decoding to optimize a utility function backed by a metric or quality-estimation signal, as is done by Minimum Bayes Risk (MBR) or quality-aware decoding. The main disadvantage of these approaches is that they require an additional model to calculate the utility function during decoding, significantly increasing the computational cost. In this paper, we propose to make the NMT models themselves quality-aware by training them to estimate the quality of their own output. Using this approach for MBR decoding we can drastically reduce the size of the candidate list, resulting in a speed-up of two-orders of magnitude. When applying our method to MAP decoding we obtain quality gains similar or even superior to quality reranking approaches, but with the efficiency of single pass decoding.
Submission history
From: Christian Tomani [view email][v1] Tue, 10 Oct 2023 15:33:51 UTC (226 KB)
[v2] Mon, 26 Feb 2024 01:38:43 UTC (255 KB)
[v3] Mon, 25 Mar 2024 13:27:16 UTC (323 KB)
[v4] Thu, 11 Jul 2024 12:25:06 UTC (253 KB)
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