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LU2Net: A Lightweight Network for Real-time Underwater Image Enhancement

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arxiv 2406.14973 v1 pith:XKD7M4Z6 submitted 2024-06-21 cs.CV eess.IV

classification cs.CVeess.IV
keywords underwaterenhancementreal-timevisionimageimageslu2netmodel
verification ladder T0 review T1 audit T2 compute T3 formal
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Computer vision techniques have empowered underwater robots to effectively undertake a multitude of tasks, including object tracking and path planning. However, underwater optical factors like light refraction and absorption present challenges to underwater vision, which cause degradation of underwater images. A variety of underwater image enhancement methods have been proposed to improve the effectiveness of underwater vision perception. Nevertheless, for real-time vision tasks on underwater robots, it is necessary to overcome the challenges associated with algorithmic efficiency and real-time capabilities. In this paper, we introduce Lightweight Underwater Unet (LU2Net), a novel U-shape network designed specifically for real-time enhancement of underwater images. The proposed model incorporates axial depthwise convolution and the channel attention module, enabling it to significantly reduce computational demands and model parameters, thereby improving processing speed. The extensive experiments conducted on the dataset and real-world underwater robots demonstrate the exceptional performance and speed of proposed model. It is capable of providing well-enhanced underwater images at a speed 8 times faster than the current state-of-the-art underwater image enhancement method. Moreover, LU2Net is able to handle real-time underwater video enhancement.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Aucamp: An Underwater Camera-Based Multi-Robot Platform with Low-Cost, Distributed, and Robust Localization

    cs.RO 2025-06 reject novelty 4.0 of 10

    Aucamp combines depth-from-focus, a consensus update, and pressure-sensor orientation control into a low-cost underwater multi-robot testbed, but the 'distributed' claim is undercut by the ground-station-centric archi...

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