Beyond Accuracy: The Role of Calibration in Self-Improving Large Language Models

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Hauptverfasser: Huang, Liangjie, Li, Dawei, Liu, Huan, Cheng, Lu
Format: Preprint
Veröffentlicht: 2025
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author Huang, Liangjie
Li, Dawei
Liu, Huan
Cheng, Lu
author_facet Huang, Liangjie
Li, Dawei
Liu, Huan
Cheng, Lu
contents Large Language Models (LLMs) have demonstrated remarkable self-improvement capabilities, whereby models iteratively revise their outputs through self-generated feedback. While this reflective mechanism has shown promise in enhancing task performance, recent studies suggest that it may also introduce undesirable biases-most notably, self-bias, or the tendency of LLMs to favor their own prior outputs. In this work, we extend this line of inquiry by investigating the impact on confidence estimation. We evaluate three representative self-improvement paradigms-basic prompting, Chain-of-Thought (CoT) prompting, and tuning-based methods and find that iterative self-improvement can lead to systematic overconfidence, as evidenced by a steadily increasing Expected Calibration Error (ECE) and lower accuracy with high confidence. We then further explore the integration of confidence calibration techniques with self-improvement. Specifically, we compare three strategies: (1) applying calibration after multiple rounds of self-improvement, (2) calibrating before self-improvement, and (3) applying calibration iteratively at each self-improvement step. Our results show that iterative calibration is most effective in reducing ECE, yielding improved calibration. Our work pioneers the study of self-improving LLMs from a calibration perspective, offering valuable insights into balancing model performance and reliability.
format Preprint
id arxiv_https___arxiv_org_abs_2504_02902
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Beyond Accuracy: The Role of Calibration in Self-Improving Large Language Models
Huang, Liangjie
Li, Dawei
Liu, Huan
Cheng, Lu
Computation and Language
Artificial Intelligence
Large Language Models (LLMs) have demonstrated remarkable self-improvement capabilities, whereby models iteratively revise their outputs through self-generated feedback. While this reflective mechanism has shown promise in enhancing task performance, recent studies suggest that it may also introduce undesirable biases-most notably, self-bias, or the tendency of LLMs to favor their own prior outputs. In this work, we extend this line of inquiry by investigating the impact on confidence estimation. We evaluate three representative self-improvement paradigms-basic prompting, Chain-of-Thought (CoT) prompting, and tuning-based methods and find that iterative self-improvement can lead to systematic overconfidence, as evidenced by a steadily increasing Expected Calibration Error (ECE) and lower accuracy with high confidence. We then further explore the integration of confidence calibration techniques with self-improvement. Specifically, we compare three strategies: (1) applying calibration after multiple rounds of self-improvement, (2) calibrating before self-improvement, and (3) applying calibration iteratively at each self-improvement step. Our results show that iterative calibration is most effective in reducing ECE, yielding improved calibration. Our work pioneers the study of self-improving LLMs from a calibration perspective, offering valuable insights into balancing model performance and reliability.
title Beyond Accuracy: The Role of Calibration in Self-Improving Large Language Models
topic Computation and Language
Artificial Intelligence
url https://arxiv.org/abs/2504.02902