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Shrinking the Variance: Shrinkage Baselines for Reinforcement Learning with Verifiable Rewards

Machine Learning 2026-02-19 v2

Abstract

Reinforcement Learning with Verifiable Rewards (RLVR) has emerged as a powerful paradigm for post-training large reasoning models (LRMs) using policy-gradient methods such as GRPO. To stabilize training, these methods typically center trajectory rewards by subtracting the empirical mean reward for each prompt. Statistically, this centering acts as a control variate (baseline), reducing the variance of the policy-gradient estimator. In practice, the mean reward is estimated using per-prompt empirical averages computed from the generations for each prompt in a batch. Motivated by Stein's paradox, we propose shrinkage estimators that combine per-prompt and across-prompt means to improve per-prompt mean estimation accuracy, especially in the low-generation regime typical of RLVR. Theoretically, we construct a shrinkage-based baseline that provably yields lower-variance policy-gradient estimators across algorithms. Our baseline is a drop-in replacement for standard per-prompt mean baselines and requires no additional hyperparameters or computation. Empirically, shrinkage baselines consistently outperform empirical-mean baselines, producing lower-variance gradient updates and improved training stability.

Keywords

Cite

@article{arxiv.2511.03710,
  title  = {Shrinking the Variance: Shrinkage Baselines for Reinforcement Learning with Verifiable Rewards},
  author = {Guanning Zeng and Zhaoyi Zhou and Daman Arora and Andrea Zanette},
  journal= {arXiv preprint arXiv:2511.03710},
  year   = {2026}
}

Comments

Preprint. Under Review

R2 v1 2026-07-01T07:23:17.584Z