Number-theoretic transforms (NTTs) have been applied in the fragile watermarking of digital images. A block-parallel systolic-array architecture is proposed for watermarking based on the 2-D special Hartley NTT (HNTT). The proposed core employs two 2-D special HNTT hardware cores, each using digital arithmetic over $\mathrm{GF}(3)$, and processes $4\times4$ blocks of pixels in parallel every clock cycle. Prototypes are operational on a Xilinx Sx35-10ff668 FPGA device. The maximum estimated throughput of the FPGA circuit is 100 million $4\times4$ HNTT fragile watermarked blocks per second, when clocked at 100 MHz. Potential applications exist in high-traffic back-end servers dealing with large amounts of protected digital images requiring authentication, in remote-sensing for high-security surveillance applications, in real-time video processing of information of a sensitive nature or matters of national security, in video/photographic content management of corporate clients, in authenticating multimedia for the entertainment industry, in the authentication of electronic evidence material, and in real-time news streaming.
翻译:在数字图象的脆弱水标记中应用了数字理论变换(NTTs),提议在2D专用Hartley NTT(HNTT)的基础上进行水标记,提议的核心使用两个2D特别HNT硬件核心,每个核心使用以美元计价的数码算术,每个钟周期同时使用4美元,4 times4美元的像素块。原型在Xilinx Sx35-10-10ff668 FPGA装置上运作。FPGA电路的最大估计通过量为每秒100兆赫,每秒100兆赫4美元4.times4美元HNTT脆弱水标记区块的最大估计通过量。在高流量后端服务器中存在潜在应用,涉及大量需要认证的受保护的数字图像,用于高安全监测应用的遥感,用于敏感性质或国家安全事项的信息的实时视频处理,用于公司客户的视频/照片内容管理,用于真实信息流的认证,用于娱乐业和新闻流的实时多媒体。