Laser & Optoelectronics Progress, Volume. 62, Issue 2, 0237011(2025)
ULCF-Net: An Underwater Low-Illumination Image Enhancement Algorithm Based on a Cross-Scale Structure and Color Fusion
With an increase in the shooting depth, underwater images suffer from issues such as low brightness, color distortion, and blurred details. Therefore, an underwater low-illumination image enhancement algorithm based on an encoding and decoding structure (ULCF-Net) is designed. First, a brightness enhancement module is designed based on a half-channel Fourier transform, which enhances the response in dark regions by combining the frequency domain and spatial information. Second, cross-scale connections are introduced within the encoding and decoding structure to improve the detailed expression of underwater optical images. Finally, a dual-stream multiscale color enhancement module is designed to improve the color fusion effects across different feature levels. Experimental results on publicly available underwater low-illumination image datasets demonstrate that the proposed ULCF-Net exhibits excellent enhancement in terms of brightness, color, and details.
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Yang Tao, Hao Tan, Liqun Zhou. ULCF-Net: An Underwater Low-Illumination Image Enhancement Algorithm Based on a Cross-Scale Structure and Color Fusion[J]. Laser & Optoelectronics Progress, 2025, 62(2): 0237011
Category: Digital Image Processing
Received: Apr. 30, 2024
Accepted: Jun. 3, 2024
Published Online: Dec. 17, 2024
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CSTR:32186.14.LOP241207