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Dynamic Snake Convolution Neural Network for Enhanced Image Super-Resolution

  • Weiqiang Xin
  • , Ziang Wu
  • , Qi Zhu
  • , Tingting Bi
  • , Bing Li
  • , Chunwei Tian*
  • *Corresponding author for this work
  • Northwestern Polytechnical University Xian
  • Nanjing University of Aeronautics and Astronautics
  • University of Melbourne

Research output: Contribution to journalArticlepeer-review

Abstract

Image super-resolution (SR) is essential for enhancing image quality in critical applications, such as medical imaging and satellite remote sensing. However, existing methods were often limited in their ability to effectively process and integrate multi-scales information from fine textures to global structures. To address these limitations, this paper proposes DSCNN, a dynamic snake convolution neural network for enhanced image super-resolution. DSCNN optimizes feature extraction and network architecture to enhance both performance and efficiency: To improve feature extraction, the core innovation is a feature extraction and enhancement module with dynamic snake convolution that dynamically adjusts the convolution kernel’s shape and position to better fit the image’s geometric structures, significantly improving feature extraction. To optimize the network’s structure, DSCNN employs an enhanced residual network framework. This framework utilizes parallel convolutional layers and a global feature fusion mechanism to further strengthen feature extraction capability and gradient flow efficiency. Additionally, the network incorporates a SwishReLU-based activation function and a multi-scale convolutional concatenation structure. This multi-scale design effectively captures both local details and global image structure, enhancing SR reconstruction. In summary, the proposed DSCNN outperforms existing methods in both objective metrics and visual perception (e.g., our method achieved optimal PSNR and SSIM results on the Set5 (Formula presented.) dataset).

Original languageEnglish
Article number2457
JournalMathematics
Volume13
Issue number15
DOIs
StatePublished - Aug 2025
Externally publishedYes

Keywords

  • SISR
  • dynamic convolution
  • multi-scale structure

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