English

SLENet: A Guidance-Enhanced Network for Underwater Camouflaged Object Detection

Computer Vision and Pattern Recognition 2025-09-08 v2

Abstract

Underwater Camouflaged Object Detection (UCOD) aims to identify objects that blend seamlessly into underwater environments. This task is critically important to marine ecology. However, it remains largely underexplored and accurate identification is severely hindered by optical distortions, water turbidity, and the complex traits of marine organisms. To address these challenges, we introduce the UCOD task and present DeepCamo, a benchmark dataset designed for this domain. We also propose Semantic Localization and Enhancement Network (SLENet), a novel framework for UCOD. We first benchmark state-of-the-art COD models on DeepCamo to reveal key issues, upon which SLENet is built. In particular, we incorporate Gamma-Asymmetric Enhancement (GAE) module and a Localization Guidance Branch (LGB) to enhance multi-scale feature representation while generating a location map enriched with global semantic information. This map guides the Multi-Scale Supervised Decoder (MSSD) to produce more accurate predictions. Experiments on our DeepCamo dataset and three benchmark COD datasets confirm SLENet's superior performance over SOTA methods, and underscore its high generality for the broader COD task.

Keywords

Cite

@article{arxiv.2509.03786,
  title  = {SLENet: A Guidance-Enhanced Network for Underwater Camouflaged Object Detection},
  author = {Xinxin Huang and Han Sun and Ningzhong Liu and Huiyu Zhou and Yinan Yao},
  journal= {arXiv preprint arXiv:2509.03786},
  year   = {2025}
}

Comments

14pages, accepted by PRCV2025

R2 v1 2026-07-01T05:20:11.459Z