基于小波变换和CKKS同态加密的加速加密水印

A. Basuki, Iwan Setiawan, D. Rosiyadi, Taufik Iqbal Ramdhani, Heru Susanto
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引用次数: 0

摘要

加密水印可以在区块链等公共平台上嵌入秘密水印,以提高透明度。它提供数据和计算可追溯性,以确保可验证的水印嵌入和验证。然而,加密水印在高计算成本和长计算时间方面存在挫折,阻碍了其在大多数区块链平台上的实现。本文提出了一种联合使用离散小波变换(DWT)和CKKS (Cheon-Kim-Kim-Song)同态加密来加速和提高加密水印的效率。DWT将加密数据的大小减少到2L,其中L指的是DWT级别。同时,CKKS加密利用近似算术计算和预定义精度加快了加密计算速度。结果表明,与现有的方法(bfv加密和DCT)相比,CKKS和DWT级别2是最优的解决方案,计算速度提高了≈27.24倍,内存减少了≈5.48倍。此外,该方法具有与非加密水印相似的水印质量和水印可提取性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Accelerating Encrypted Watermarking using Wavelet Transform and CKKS Homomorphic Encryption
Encrypted watermarking enables secret watermark embedding on a public platform such as blockchain for better transparency. It offers data and computation traceability to ensure a proveable watermark embedding and validation. Nevertheless, encrypted watermarking has a setback regarding high computation cost and long computation time that hinder its implementation on most blockchain platforms. In this paper, we propose a joint use of discrete wavelet transform (DWT) and CKKS (Cheon-Kim-Kim-Song) homomorphic encryption to speed up and improve the efficiency of encrypted watermarking. The DWT reduces the size of encrypted data to 2L where L refers to the DWT level. Meanwhile, the CKKS encryption speed up the encrypted computation using approximate arithmetic computation and predefined precision. The result shows that CKKS and DWT level 2 is the most optimal solution delivering up to ≈ 27.24 × faster computation and ≈ 5.48 × lesser memory compared to the existing method (BFV-encryption and DCT). In addition, the proposed method has a similar watermarking quality and watermark extractability to non-encrypted watermarking.
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