光学水印技术对图像几何畸变具有鲁棒性

Y. Ishikawa, K. Uehira, K. Yanaka
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引用次数: 6

摘要

本文提出了一种利用空间调制照明对图像几何畸变具有鲁棒性的光学水印技术。它可以保护“模拟”物品,如艺术家的画作,防止它们在博物馆被非法拍照。在实际情况下,非法捕获的图像可能包含各种失真,并且嵌入的水印可能被错误地检测到。由于拍摄对象的拍摄角度引起的几何畸变是一个特别重要的问题。我们进行了实验来评估几何扭曲的水印图像的鲁棒性,其中扭曲是通过将投影仪和数码相机的位置从物体的正前方移动而故意产生的。在采用离散余弦变换(DCT)和Walsh-Hadamard变换(WHT)作为水印嵌入方法的情况下,即使投影仪与数码相机之间的拍摄角度倾斜约20度,所提取的水印数据的准确率也接近100%。我们引入了矩形网格拟合和基于四个最近点的“双线性插值”技术来纠正畸变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optical watermarking technique robust to geometrical distortion in image
This paper presents an optical watermarking technique that is robust against geometrical distortion in images by using spatially modulated illumination. It can protect “analog” objects like pictures painted by artists from having photographs taken of them illegally in museums. Illegally captured images in practical situations may contain various distortions, and embedded watermarks may be incorrectly detected. Geometrical distortion caused by the shooting angle that the objects are captured at is a particularly major problem. We carried out experiments to evaluate the robustness of watermarking images that were geometrically distorted, in which distortions were intentionally created by moving the position of the projector and the digital camera from right in front of the object. The accuracy of the extracted watermarking data was almost 100%, even if the shooting angle was inclined by about 20 degrees between the projector and digital camera, in both cases when a Discrete Cosine Transform (DCT) and a Walsh-Hadamard Transform (WHT) were used as the methods of embedding watermarks. We introduced rectangular mesh fitting and a technique of “bi-linear interpolation” based on the four nearest points to correct the distortions.
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