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Noise-Resilient Symbolic Regression with Dynamic Gating Reinforcement Learning

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abstract

Symbolic regression (SR) has emerged as a pivotal technique for uncovering the intrinsic information within data and enhancing the interpretability of AI models. However, current state-of-the-art (sota) SR methods struggle to perform correct recovery of symbolic expressions from high-noise data. To address this issue, we introduce a novel noise-resilient SR (NRSR) method capable of recovering expressions from high-noise data. Our method leverages a novel reinforcement learning (RL) approach in conjunction with a designed noise-resilient gating module (NGM) to learn symbolic selection policies. The gating module can dynamically filter the meaningless information from high-noise data, thereby demonstrating a high noise-resilient capability for the SR process. And we also design a mixed path entropy (MPE) bonus term in the RL process to increase the exploration capabilities of the policy. Experimental results demonstrate that our method significantly outperforms several popular baselines on benchmarks with high-noise data. Furthermore, our method also can achieve sota performance on benchmarks with clean data, showcasing its robustness and efficacy in SR tasks.

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2025 1

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representative citing papers

SymMatika: Structure-Aware Symbolic Discovery

cs.LG · 2025-07-03 · conditional · novelty 6.0

A structure-aware symbolic regression framework combining multi-island genetic programming with reusable motif libraries reports state-of-the-art recovery rates on Nguyen and Feynman benchmarks, including 61% on Nguyen-12.

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  • SymMatika: Structure-Aware Symbolic Discovery cs.LG · 2025-07-03 · conditional · none · ref 31 · internal anchor

    A structure-aware symbolic regression framework combining multi-island genetic programming with reusable motif libraries reports state-of-the-art recovery rates on Nguyen and Feynman benchmarks, including 61% on Nguyen-12.