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Orientation Modulation for Data Hiding in Clustered-Dot Halftone Prints

机译:隐藏在簇点半色调打印中的数据的方向调制

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We present a new framework for data hiding in images printed with clustered dot halftones. Our application scenario, like other hardcopy embedding methods, encounters fundamental challenges due to extreme bilevel quantization inherent in halftoning, the stringent requirements of image fidelity, and other unavoidable printing and scanning distortions. To overcome these challenges, while still allowing for automated extraction of the embedded data and a high embedding capacity, we propose a number of innovations. First, we perform the embedding jointly with the halftoning by employing an analytical halftone threshold function that allows steering of the halftone spot orientation within each halftone cell based upon embedded data. In this process, image fidelity is emphasized and, if necessary, the capability to recover individual data values is sacrificed resulting in unavoidable erasures and errors. To overcome these and other sources of errors, we propose a suitable data detection and error control methodology based upon a statistical representation for the print-scan channel that effectively models the channel dependence upon the cover image gray-level. To combat the geometric distortion inherent in the print-scan process, we exploit the periodic halftone structure to recover from global scaling and rotation and propose a novel decision directed synchronization technique that counters locally varying printing distortion. Experimental results demonstrate the power of the proposed framework: we achieve high operational rates while preserving halftone image quality.
机译:我们提出了一个新的数据隐藏框架,该图像隐藏在带有簇状点半色调的图像中。像其他硬拷贝嵌入方法一样,由于半色调固有的极端双级量化,图像保真度的严格要求以及其他不可避免的打印和扫描失真,我们的应用场景遇到了基本挑战。为了克服这些挑战,同时仍允许自动提取嵌入式数据和高嵌入能力,我们提出了许多创新措施。首先,我们通过采用分析半色调阈值功能与半色调联合执行嵌入,该功能允许基于嵌入数据控制每个半色调单元内的半色调点方向。在此过程中,强调了图像保真度,并且在必要时牺牲了恢复单个数据值的能力,从而导致不可避免的擦除和错误。为了克服这些和其他错误源,我们基于打印扫描通道的统计表示提出了一种合适的数据检测和错误控制方法,该方法有效地模拟了通道对封面图像灰度的依赖性。为了解决打印扫描过程中固有的几何失真,我们利用周期性的半色调结构从全局缩放和旋转中恢复,并提出了一种新颖的基于决策的同步技术,该技术可应对局部变化的打印失真。实验结果证明了所提出框架的强大功能:我们在保持中间色调图像质量的同时实现了较高的工作效率。

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