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VersaPRM: Multi-Domain Process Reward Model via Synthetic Reasoning Data
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Process Reward Models (PRMs) have proven effective at enhancing mathematical reasoning for Large Language Models (LLMs) by leveraging increased inference-time computation. However, they are predominantly trained on mathematical data and their generalizability to non-mathematical domains has not been rigorously studied. In response, this work first shows that current PRMs have poor performance in other domains. To address this limitation, we introduce VersaPRM, a multi-domain PRM trained on synthetic reasoning data generated using our novel data generation and annotation method. VersaPRM achieves consistent performance gains across diverse domains. For instance, in the MMLU-Pro category of Law, VersaPRM via weighted majority voting, achieves a 7.9% performance gain over the majority voting baseline -- surpassing Qwen2.5-Math-PRM's gain of 1.3%. We further contribute to the community by open-sourcing all data, code and models for VersaPRM.
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Cited by 3 Pith papers
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MASPRM: Multi-Agent System Process Reward Model
MASPRM trains a per-agent, per-message value head from outcome-only MCTS rollouts and uses it to guide step-level beam search and MCTS, improving exact match on GSM8K by up to +30.7 points over a greedy multi-agent pass.
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GM-PRM: A Generative Multimodal Process Reward Model for Multimodal Mathematical Reasoning
A generative multimodal process reward model that produces step-level critiques and corrections improves average math accuracy for six multimodal LLMs by 2.9 to 5.9 points under a refinement-based Best-of-N strategy.
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Test-Time Scaling for Small VLMs on Multilingual Visual MCQ
On EXAMS-V, token budget and parseability dominate chain count, PRM-guided search, and selectors for small VLMs; the policy model itself yields the largest gain.
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