Papers › Backdoor Defense via Suppressing Model Shortcuts

Backdoor Defense via Suppressing Model Shortcuts

2 Nov 2022arXiv:2211.05631archive 2025-07-28

Sheng Yang, Yiming Li, Yong Jiang, Shu-Tao Xia

Recent studies have demonstrated that deep neural networks (DNNs) are vulnerable to backdoor attacks during the training process. Specifically, the adversaries intend to embed hidden backdoors in DNNs so that malicious model predictions can be activated through pre-defined trigger patterns. In this paper, we explore the backdoor mechanism from the angle of the model structure. We select the skip connection for discussions, inspired by the understanding that it helps the learning of model `shortcuts' where backdoor triggers are usually easier to be learned. Specifically, we demonstrate that the attack success rate (ASR) decreases significantly when reducing the outputs of some key skip connections. Based on this observation, we design a simple yet effective backdoor removal method by suppressing the skip connections in critical layers selected by our method. We also implement fine-tuning on these layers to recover high benign accuracy and to further reduce ASR. Extensive experiments on benchmark datasets verify the effectiveness of our method.

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1ran · honoured contract
2ran · our draft was wrong

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forward_hook 20000yshust/Backdoor-Defense-Via-Suppressing-Model-Shortcuts/SSFT.py official repository ran · our draft was wrong no licence file found · pointer only · 4422b01e0f2c0cc1 · report
gen_grid 20000yshust/Backdoor-Defense-Via-Suppressing-Model-Shortcuts/train_backdoormodel.py official repository ran · honoured contract fingerprinted no licence file found · pointer only · afc9001040d3aa34 · report
register_forwardhook_for_resnet 20000yshust/Backdoor-Defense-Via-Suppressing-Model-Shortcuts/SSFT.py official repository ran · our draft was wrong no licence file found · pointer only · 03c752f5ded652ef · report

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