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Improving Reward Models with Synthetic Critiques
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Reward models (RMs) play a critical role in aligning language models through the process of reinforcement learning from human feedback. RMs are trained to predict a score reflecting human preference, which requires significant time and cost for human annotation. Additionally, RMs tend to quickly overfit on superficial features in the training set, hindering their generalization performance on unseen distributions. We propose a novel approach using synthetic natural language critiques generated by large language models to provide additional feedback, evaluating aspects such as instruction following, correctness, and style. This offers richer signals and more robust features for RMs to assess and score on. We demonstrate that high-quality critiques improve the performance and data efficiency of RMs initialized from different pretrained models, reducing the reliance on costly human annotations. Furthermore, incorporating critiques improves both the interpretability and robustness of RM training.
Forward citations
Cited by 2 Pith papers
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TRPrompt: Bootstrapping Query-Aware Prompt Optimization from Textual Rewards
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Think-RM: Enabling Long-Horizon Reasoning in Generative Reward Models
A generative reward model trained with long chain-of-thought and rule-based RL outperforms standard and vertically scaled reward baselines on RM-Bench and RewardBench.
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