Papers › Certified Neural Network Watermarks with Randomized Smoothing

Certified Neural Network Watermarks with Randomized Smoothing

16 Jul 2022arXiv:2207.07972archive 2025-07-28

Arpit Bansal, Ping-Yeh Chiang, Michael Curry, Rajiv Jain, Curtis Wigington, Varun Manjunatha, John P Dickerson, Tom Goldstein

Watermarking is a commonly used strategy to protect creators' rights to digital images, videos and audio. Recently, watermarking methods have been extended to deep learning models -- in principle, the watermark should be preserved when an adversary tries to copy the model. However, in practice, watermarks can often be removed by an intelligent adversary. Several papers have proposed watermarking methods that claim to be empirically resistant to different types of removal attacks, but these new techniques often fail in the face of new or better-tuned adversaries. In this paper, we propose a certifiable watermarking method. Using the randomized smoothing technique proposed in Chiang et al., we show that our watermark is guaranteed to be unremovable unless the model parameters are changed by more than a certain l2 threshold. In addition to being certifiable, our watermark is also empirically more robust compared to previous watermarking methods. Our experiments can be reproduced with code at https://github.com/arpitbansal297/Certified_Watermarks

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test arpitbansal297/certified_watermarks/cifar10.py official repository ran · fixture could not drive it no licence file found · pointer only · c065f29237558c1a · report
certify arpitbansal297/certified_watermarks/cifar10_certify.py official repository unverified no licence file found · pointer only · f747f44e1bfe0ab8 · report
train arpitbansal297/certified_watermarks/cifar10.py official repository unverified no licence file found · pointer only · c941e2cba771fba3 · report
train_robust arpitbansal297/certified_watermarks/cifar10.py official repository unverified no licence file found · pointer only · e0ec4ac28744d6c7 · report

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Methods

Randomized Smoothing

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