基于硬件的CMOS图像传感器水印解决方案的设计与实现

Sonjoy Deb Roy, O. Yadid-Pecht
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引用次数: 5

摘要

这项工作提出了基于硬件的数字水印解决方案的设计和实现,可以将不可见和半脆弱的水印插入到基于CMOS的图像传感器捕获的多媒体内容(图像或视频)中,实时用于身份验证目的。该系统被设计为与基于CMOS的相机单元集成。从我们最初的基于JPEG的水印设计开始,通过MJPEG的水印设计,我们还将报告常用的MPEG编码视频的水印解决方案。目前报道的系统在CMOS图像传感器捕获视频后立即实时工作。水印嵌入是在离散余弦变换(DCT)域中进行处理的,它允许将视频(或图像)的水印和编码集成到一个系统中。本文所描述的基于硬件的水印系统在不增加系统功耗和硬件资源的情况下,工作效率高。此外,水印率(水印生成和嵌入)也足够高,可以实时适应MPEG-4视频流的帧速率。这种新的基于硬件的CMOS图像传感器水印系统具有最小的视频质量下降,它可以承受某些潜在的攻击,如掩盖攻击,裁剪和视频序列的片段删除。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and implementation of hardware based watermarking solutions for CMOS image sensors
This work presents the design and implementation of hardware based digital watermarking solutions that can insert invisible and semi-fragile watermark into multimedia contents (image or video) captured by CMOS based image sensors, in real time for authentication purposes. The systems are designed to be integrated with the CMOS based camera unit. Starting from our initial JPEG based watermarking design, through an MJPEG one, we will also report on the watermarking solution for the commonly used MPEG encoded video. The current reported system works in real time right after the capturing of video by the CMOS based image sensor. The watermark embedding is processed in the Discrete Cosine Transform (DCT) domain which allows the integration of both watermarking and encoding of the video (or image) into a single system. The hardware based watermarking system described here, works efficiently without high penalty in system power consumption and hardware resources. Moreover, the watermarking rate (watermark generation and embedding) is also high enough to adapt with the frame rate of MPEG-4 video streams in realtime. This new hardware based watermarking system for CMOS based image sensor features minimum video quality degradation and it can withstand certain potential attacks i.e. cover-up attack, cropping, and segment removal from video sequences.
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