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Full-Step-DPO: Self-Supervised Preference Optimization with Step-wise Rewards for Mathematical Reasoning

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arxiv 2502.14356 v1 pith:GN6W7KMS submitted 2025-02-20 cs.CL

classification cs.CL
keywords reasoningmathematicalrewardsstep-wiseerroneousfull-step-dpostepchain
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Direct Preference Optimization (DPO) often struggles with long-chain mathematical reasoning. Existing approaches, such as Step-DPO, typically improve this by focusing on the first erroneous step in the reasoning chain. However, they overlook all other steps and rely heavily on humans or GPT-4 to identify erroneous steps. To address these issues, we propose Full-Step-DPO, a novel DPO framework tailored for mathematical reasoning. Instead of optimizing only the first erroneous step, it leverages step-wise rewards from the entire reasoning chain. This is achieved by training a self-supervised process reward model, which automatically scores each step, providing rewards while avoiding reliance on external signals. Furthermore, we introduce a novel step-wise DPO loss, which dynamically updates gradients based on these step-wise rewards. This endows stronger reasoning capabilities to language models. Extensive evaluations on both in-domain and out-of-domain mathematical reasoning benchmarks across various base language models, demonstrate that Full-Step-DPO achieves superior performance compared to state-of-the-art baselines.

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  1. DPO-Shift: Shifting the Distribution of Direct Preference Optimization

    cs.CL 2025-02 conditional novelty 4.0 of 10

    DPO-Shift multiplies the rejected-response term in the DPO loss by a factor f(λ) below 1, shifting chosen-response probabilities upward at the expense of some reward margin.

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