arXiv:2502.10475cs.CRcs.AI2025-02被引 1

为3D高斯点云设计可抵抗几何变形的多维水印框架

X-SG$^2$S: Safe and Generalizable Gaussian Splatting with X-dimensional Watermarks

  • 分块水印+自适应门控选择注入位置,支持1-3维水印并行嵌入
  • 在不修改参数和管线前提下实现水印嵌入与提取,渲染失真极小
  • 首次统一1D至3D水印技术,适合版权保护与可信生成场景

3D高斯点云(3DGS)广泛应用于三维重建与生成,但其快速普及引发信息泄露与未经授权使用的担忧,亟需高效水印技术。现有方法存在容量低、对几何扰动脆弱、需昂贵微调或流程修改等局限。本文提出X-SG²S框架,可同时嵌入1至3维水印以实现版权保护,且保持原始3DGS场景的高保真度。首先将水印分割为消息块,通过自适应门控选择注入位置;再利用多维(XD)注入头将多模态消息嵌入排序后的3DGS点中。恢复时,可学习门控识别水印位置,配合XD提取头还原隐藏信息。X-SG²S是首个统一1D至3D水印并支持多模态同步嵌入的框架,在无参数/流程修改下实现最小渲染干扰。大量实验表明,该方法能有效维持水印与原始3DGS的一致性,对模型退化具有鲁棒性,并保持准确判别能力。

原文摘要 · Abstract (English)

3D Gaussian Splatting (3DGS) has been widely used in 3D reconstruction and 3D generation. However, the rapid adoption of 3D Gaussian Splatting raises growing concerns about information leakage and unauthorized use, urging the exploration of effective watermarking techniques. However, existing methods are limited by low capacity, fragility under geometric perturbations, and the infeasible requirement for costly fine-tuning or pipeline modifications, motivating the need for a generalizable, feed-forward framework capable of robust multi-modal embedding with minimal intrusion. In this paper, we propose a new framework X-SG$^2$S which can simultaneously inject 1D to 3D watermarks for copyright protection, while keeping the high fidelity of original 3DGS scenes. Specifically, we first split the watermarks into message patches. A self-adaptive gate is developed to select the injection positions of the watermark messages. Then, we use an XD (multi-dimensional) injection head to inject multi-modal messages into sorted 3DGS points. To restore watermarking messages, a learnable gate is developed to recognize the watermarked locations, from which our XD-extraction heads are used to restore hidden messages. X-SG$^2$S is the first framework to unify 1D-to-3D watermarking and enable simultaneous multi-modal watermark embedding in 3DGS, achieving this with minimal rendering interference and zero modifications to parameters or pipelines. Extensive experiments demonstrate that X-SG$^2$S effectively preserves consistency between the watermark and the original 3DGS, exhibits robustness against model degradation, and maintains accurate judgment capabilities.

3D生成水印技术高斯点云版权保护

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