一种利用空间调制照明将时域序列数据嵌入实景图像的技术

Y. Ishikawa, K. Uehira, K. Yanaka
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引用次数: 1

摘要

提出了一种利用空间调制照明将时域序列数据嵌入到运动图像数据中的新技术。这是基于“光学水印”技术,该技术可用于保护“模拟”物体,如艺术家所画的画,使其不被非法拍摄。光学水印的另一个重要应用是在不自觉的情况下将实时数据序列嵌入到真实的物体图像中,这些图像可能是运动图像。实验采用投影仪将每秒帧数为10fps的连续水印图像数据照射到物体上,用摄像机拍摄每秒帧数为30fps的运动图像数据。结果表明,该方法能够准确地从所获取的运动图像数据中检测出嵌入的序列水印信息。在实验中,我们在每帧图像大小为128 × 128像素的水印图像区域中嵌入256比特的信息,即嵌入信息的比特率为2.5kbps。实验结果表明,采用更大的水印嵌入面积和更高的每帧图像分辨率,可以获得更快的比特率和更高的检测精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A technique of time domain sequential data embedding into real object image using spatially modulated illumination
We propose a new technique that uses spatially modulated illumination for embedding time domain sequential data into moving picture data. This is based on the “optical watermarking” technology that can be applied to protect “analog” objects like pictures painted by artists from having photographs taken of them illegally. Another important application of optical watermarking is embedding real time data sequence into real object images unconsciously, which may be moving pictures. We carried out experiments that sequential watermarking image data that had 10 fps (frame per second) were irradiated onto objects with projector, and moving image data with the picture rate of 30 fps were taken with a video camera. The result was that the embedded sequential watermarking information could be detected accurately from the obtained moving image data. In the experiments we embedded 256 bit information into watermarking image area of each frame that had the image size of 128 × 128 pixels, that is, the bit-rate of embedding information was 2.5kbps. The experimental results indicate that faster bit-rate and improved detection accuracy may be achieved when lager size of the area of embedding watermarks and higher resolution image for each frame are used.
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