Papers › UNIT: Backdoor Mitigation via Automated Neural Distribution Tightening

UNIT: Backdoor Mitigation via Automated Neural Distribution Tightening

16 Jul 2024arXiv:2407.11372archive 2025-07-28

Siyuan Cheng, Guangyu Shen, Kaiyuan Zhang, Guanhong Tao, Shengwei An, Hanxi Guo, Shiqing Ma, Xiangyu Zhang

Deep neural networks (DNNs) have demonstrated effectiveness in various fields. However, DNNs are vulnerable to backdoor attacks, which inject a unique pattern, called trigger, into the input to cause misclassification to an attack-chosen target label. While existing works have proposed various methods to mitigate backdoor effects in poisoned models, they tend to be less effective against recent advanced attacks. In this paper, we introduce a novel post-training defense technique UNIT that can effectively eliminate backdoor effects for a variety of attacks. In specific, UNIT approximates a unique and tight activation distribution for each neuron in the model. It then proactively dispels substantially large activation values that exceed the approximated boundaries. Our experimental results demonstrate that UNIT outperforms 7 popular defense methods against 14 existing backdoor attacks, including 2 advanced attacks, using only 5\% of clean training data. UNIT is also cost efficient. The code is accessible at https://github.com/Megum1/UNIT.

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activation_clip megum1/unit/unit.py official repository ran fingerprinted MIT (permissive) · 503dbc9905519b7c · report
eval_acc megum1/unit/evaluate.py official repository ran MIT (permissive) · c72a4b5d656afd4d · report
get_config megum1/unit/utils.py official repository ran MIT (permissive) · 51385a626b151d0d · report
get_norm megum1/unit/utils.py official repository ran MIT (permissive) · 1959b01afae33059 · report
get_transform megum1/unit/utils.py official repository ran MIT (permissive) · 4ed2471bba21c78d · report
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