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Article | Open Access

ResghostNet: Boosting GhostNet with Residual Connections and Adaptive-SE Blocks

Yuang Chen1,2Yong Li1( )Fang Lin1,2Shuhan Lv1,2Jiaze Jiang1,2
Key Laboratory of CTC & IE (Engineering University of PAP), Ministry of Education, Xi’an, 710086, China
Graduate Student Brigade, Engineering University of PAP, Xi’an, 710086, China
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Abstract

Aiming at the problem of potential information noise introduced during the generation of ghost feature maps in GhostNet, this paper proposes a novel lightweight neural network model called ResghostNet. This model constructs the Resghost Module by combining residual connections and Adaptive-SE Blocks, which enhances the quality of generated feature maps through direct propagation of original input information and selection of important channels before cheap operations. Specifically, ResghostNet introduces residual connections on the basis of the Ghost Module to optimize the information flow, and designs a weight self-attention mechanism combined with SE blocks to enhance feature expression capabilities in cheap operations. Experimental results on the ImageNet dataset show that, compared to GhostNet, ResghostNet achieves higher accuracy while reducing the number of parameters by 52%. Although the computational complexity increases, by optimizing the usage strategy of GPU cache memory, the model’s inference speed becomes faster. The ResghostNet is optimized in terms of classification accuracy and the number of model parameters, and shows great potential in edge computing devices.

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Computers, Materials & Continua
Pages 1-18

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Cite this article:
Chen Y, Li Y, Lin F, et al. ResghostNet: Boosting GhostNet with Residual Connections and Adaptive-SE Blocks. Computers, Materials & Continua, 2026, 86(2): 1-18. https://doi.org/10.32604/cmc.2025.070990

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Received: 29 July 2025
Accepted: 26 September 2025
Published: 09 December 2025
© The Author 2025.

This work is licensed under a Creative Commons Attribution 4.0 International License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.