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Alleviating Distribution Shift in Synthetic Data for Machine Translation Quality Estimation

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Quality Estimation (QE) models evaluate the quality of machine translations without reference translations, serving as the reward models for the translation task. Due to the data scarcity, synthetic data generation has emerged as a promising solution. However, synthetic QE data often suffers from distribution shift, which can manifest as discrepancies between pseudo and real translations, or in pseudo labels that do not align with human preferences. To tackle this issue, we introduce DCSQE, a novel framework for alleviating distribution shift in synthetic QE data. To reduce the difference between pseudo and real translations, we employ the constrained beam search algorithm and enhance translation diversity through the use of distinct generation models. DCSQE uses references, i.e., translation supervision signals, to guide both the generation and annotation processes, enhancing the quality of token-level labels. DCSQE further identifies the shortest phrase covering consecutive error tokens, mimicking human annotation behavior, to assign the final phrase-level labels. Specially, we underscore that the translation model can not annotate translations of itself accurately. Extensive experiments demonstrate that DCSQE outperforms SOTA baselines like CometKiwi in both supervised and unsupervised settings. Further analysis offers insights into synthetic data generation that could benefit reward models for other tasks. The code is available at https://github.com/NJUNLP/njuqe.

Xiang Geng, Zhejian Lai, Jiajun Chen, Hao Yang, Shujian Huang• 2025

Related benchmarks

TaskDatasetResultRank
Fine-grained Quality Estimationquality estimation en-de fine-grained (test)
Word-level MCC27.11
8
Fine-grained Quality EstimationFine-grained Quality Estimation zh-en (test)
Word-level MCC28.12
8
Word-level Fine-grained Quality Estimationen-mr
MCC28.06
8
Word-level Fine-grained Quality EstimationEn-Ru
MCC0.351
7
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