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arXiv AI

[2211.09810] Tightening Robustness Verification of MaxPool-based Neural Networks via Minimizing the Over-Approximation Zone

By Advanced AI EditorMarch 31, 2025No Comments2 Mins Read
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[Submitted on 13 Nov 2022 (v1), last revised 28 Mar 2025 (this version, v2)]

View a PDF of the paper titled Tightening Robustness Verification of MaxPool-based Neural Networks via Minimizing the Over-Approximation Zone, by Yuan Xiao and 8 other authors

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Abstract:The robustness of neural network classifiers is important in the safety-critical domain and can be quantified by robustness verification. At present, efficient and scalable verification techniques are always sound but incomplete, and thus, the improvement of verified robustness results is the key criterion to evaluate the performance of incomplete verification approaches. The multi-variate function MaxPool is widely adopted yet challenging to verify. In this paper, we present Ti-Lin, a robustness verifier for MaxPool-based CNNs with Tight Linear Approximation. Following the sequel of minimizing the over-approximation zone of the non-linear function of CNNs, we are the first to propose the provably neuron-wise tightest linear bounds for the MaxPool function. By our proposed linear bounds, we can certify larger robustness results for CNNs. We evaluate the effectiveness of Ti-Lin on different verification frameworks with open-sourced benchmarks, including LeNet, PointNet, and networks trained on the MNIST, CIFAR-10, Tiny ImageNet and ModelNet40 datasets. Experimental results show that Ti-Lin significantly outperforms the state-of-the-art methods across all networks with up to 78.6% improvement in terms of the certified accuracy with almost the same time consumption as the fastest tool. Our code is available at this https URL.

Submission history

From: Yuan Xiao [view email]
[v1]
Sun, 13 Nov 2022 08:37:13 UTC (1,294 KB)
[v2]
Fri, 28 Mar 2025 08:45:35 UTC (829 KB)



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