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Unlearnable 3D Point Clouds: Class-wise Transformation Is All You Need

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arxiv 2410.03644 v1 pith:3OGYLBRT submitted 2024-10-04 cs.CV

classification cs.CV
keywords unlearnabledataclass-wisepointproposecloudsframeworkincluding
verification ladder T0 review T1 audit T2 compute T3 formal
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Traditional unlearnable strategies have been proposed to prevent unauthorized users from training on the 2D image data. With more 3D point cloud data containing sensitivity information, unauthorized usage of this new type data has also become a serious concern. To address this, we propose the first integral unlearnable framework for 3D point clouds including two processes: (i) we propose an unlearnable data protection scheme, involving a class-wise setting established by a category-adaptive allocation strategy and multi-transformations assigned to samples; (ii) we propose a data restoration scheme that utilizes class-wise inverse matrix transformation, thus enabling authorized-only training for unlearnable data. This restoration process is a practical issue overlooked in most existing unlearnable literature, \ie, even authorized users struggle to gain knowledge from 3D unlearnable data. Both theoretical and empirical results (including 6 datasets, 16 models, and 2 tasks) demonstrate the effectiveness of our proposed unlearnable framework. Our code is available at \url{https://github.com/CGCL-codes/UnlearnablePC}

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  1. Temporal Unlearnable Examples: Preventing Personal Video Data from Unauthorized Exploitation by Object Tracking

    cs.CV 2025-07 conditional novelty 6.0 of 10

    TUEs, generated by a lightweight diffusion-transformer trained on a surrogate tracker, make deep object trackers trained on protected videos near-useless on clean videos, while transferring across trackers, datasets, ...

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