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Customized Watermarking for Deep Neural Networks via Label Distribution Perturbation

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arxiv 2208.05477 v1 pith:5EUHRSGI submitted 2022-08-10 cs.CR cs.LG

classification cs.CRcs.LG
keywords perturbationwatermarkingattackwatermarkaccuracycustomizeddeepdistillation
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With the increasing application value of machine learning, the intellectual property (IP) rights of deep neural networks (DNN) are getting more and more attention. With our analysis, most of the existing DNN watermarking methods can resist fine-tuning and pruning attack, but distillation attack. To address these problem, we propose a new DNN watermarking framework, Unified Soft-label Perturbation (USP), having a detector paired with the model to be watermarked, and Customized Soft-label Perturbation (CSP), embedding watermark via adding perturbation into the model output probability distribution. Experimental results show that our methods can resist all watermark removal attacks and outperform in distillation attack. Besides, we also have an excellent trade-off between the main task and watermarking that achieving 98.68% watermark accuracy while only affecting the main task accuracy by 0.59%.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Ownership Verification of DNN Models Using White-Box Adversarial Attacks with Specified Probability Manipulation

    cs.LG 2025-05 conditional novelty 5.0 of 10

    The authors introduce I-FDGSM, an iterative adversarial attack that sets a target class probability to a specified value while keeping the true class dominant, and use it to verify whether a cloud model is the original model.

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