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On Predictability of Reinforcement Learning Dynamics for Large Language Models

Machine Learning 2026-02-24 v3 Artificial Intelligence

Abstract

Recent advances in reasoning capabilities of large language models (LLMs) are largely driven by reinforcement learning (RL), yet the underlying parameter dynamics during RL training remain poorly understood. This work identifies two fundamental properties of RL-induced parameter updates in LLMs: (1) Rank-1 Dominance, where the top singular subspace of the parameter update matrix nearly fully determines reasoning improvements, recovering over 99\% of performance gains; and (2) Rank-1 Linear Dynamics, where this dominant subspace evolves linearly throughout training, enabling accurate prediction from early checkpoints. Extensive experiments across 8 LLMs and 7 algorithms validate the generalizability of these properties. More importantly, based on these findings, we propose AlphaRL, a plug-in acceleration framework that extrapolates the final parameter update using a short early training window, achieving up to 2.5 speedup while retaining \textgreater 96\% of reasoning performance without extra modules or hyperparameter tuning. This positions our finding as a versatile and practical tool for large-scale RL, opening a path toward principled, interpretable, and efficient training paradigm for LLMs.

Keywords

Cite

@article{arxiv.2510.00553,
  title  = {On Predictability of Reinforcement Learning Dynamics for Large Language Models},
  author = {Yuchen Cai and Ding Cao and Xin Xu and Zijun Yao and Yuqing Huang and Zhenyu Tan and Benyi Zhang and Guangzhong Sun and Guiquan Liu and Junfeng Fang},
  journal= {arXiv preprint arXiv:2510.00553},
  year   = {2026}
}

Comments

48 pages, 28 figures;

R2 v1 2026-07-01T06:09:44.165Z