UQ-Bench: A Benchmark for Evaluating Multimodal LLMs on Underwater Image Quality Assessment

Authors

  • Jingchao Cao Ocean University of China
  • Guo An Ocean University of China
  • Feng Gao Ocean University of China
  • Ke Gu Beijing University of Technology
  • Yutao Liu Ocean University of China

DOI:

https://doi.org/10.1609/aaai.v40i4.37246

Abstract

Despite the rapid progress of multimodal large language models (MLLMs), their capacity for low-level visual perception in underwater environments remains underexplored. To address this gap, we present UQ-Bench, the first systematically designed benchmark for evaluating the ability of MLLMs to perceive and assess underwater image quality at the low-level visual attribute level. UQ-Bench comprises three components: (1) UW-Perception, a dataset of 3,000 underwater images paired with targeted questions on key degradations such as color cast, blur, contrast, and exposure, covering both global and local perceptual dimensions; (2) UW-Describe, a dataset of 500 images with expert-annotated gold-standard descriptions for assessing the accuracy of model-generated text; and (3) UW-Eval, an evaluation protocol employing human mean opinion scores (MOS) for quantitative quality assessment. To ensure rigorous and reproducible benchmarking, we propose a GPT-assisted evaluation framework that aligns model outputs with expert references and enables fine-grained analysis of distortion perception. Experimental results demonstrate that while MLLMs exhibit preliminary competence in underwater low-level visual tasks, they still fall short in capturing subtle degradations and achieving human-level consistency, highlighting the need for further advances in foundation models for marine vision.

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Published

2026-03-14

How to Cite

Cao, J., An, G., Gao, F., Gu, K., & Liu, Y. (2026). UQ-Bench: A Benchmark for Evaluating Multimodal LLMs on Underwater Image Quality Assessment. Proceedings of the AAAI Conference on Artificial Intelligence, 40(4), 2589–2597. https://doi.org/10.1609/aaai.v40i4.37246

Issue

Section

AAAI Technical Track on Computer Vision I