English

Efficient Self-Improvement in Multimodal Large Language Models: A Model-Level Judge-Free Approach

Computation and Language 2024-11-28 v1 Artificial Intelligence Computer Vision and Pattern Recognition Machine Learning

Abstract

Self-improvement in multimodal large language models (MLLMs) is crucial for enhancing their reliability and robustness. However, current methods often rely heavily on MLLMs themselves as judges, leading to high computational costs and potential pitfalls like reward hacking and model collapse. This paper introduces a novel, model-level judge-free self-improvement framework. Our approach employs a controlled feedback mechanism while eliminating the need for MLLMs in the verification loop. We generate preference learning pairs using a controllable hallucination mechanism and optimize data quality by leveraging lightweight, contrastive language-image encoders to evaluate and reverse pairs when necessary. Evaluations across public benchmarks and our newly introduced IC dataset designed to challenge hallucination control demonstrate that our model outperforms conventional techniques. We achieve superior precision and recall with significantly lower computational demands. This method offers an efficient pathway to scalable self-improvement in MLLMs, balancing performance gains with reduced resource requirements.

Keywords

Cite

@article{arxiv.2411.17760,
  title  = {Efficient Self-Improvement in Multimodal Large Language Models: A Model-Level Judge-Free Approach},
  author = {Shijian Deng and Wentian Zhao and Yu-Jhe Li and Kun Wan and Daniel Miranda and Ajinkya Kale and Yapeng Tian},
  journal= {arXiv preprint arXiv:2411.17760},
  year   = {2024}
}
R2 v1 2026-06-28T20:13:38.589Z