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Hardware-Friendly Descreening

机译:硬件友好的筛选

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摘要

Conventional electrophotographic printers tend to produce Moire¿ artifacts when used for printing images scanned from printed material such as books and magazines. We propose a novel noniterative, nonlinear, and space-variant descreening filter that removes a wide range of Moire¿-causing screen frequencies in a scanned document while preserving image sharpness and edge detail. This filter is inspired by Perona-Malik's anisotropic diffusion equation. The amount of diffusion of the image intensity resulting from applying the filter is governed by an edge intensity estimate that is robust under halftone noise. More precisely, the filter extracts a spatial feature vector comprising local intensity gradients estimated from a local window in a presmoothed version of the noisy input image. Tunable nonlinear polynomial functions of this feature vector are then used to perform one iteration of a discrete diffusion controlled by the intensity gradient. The polynomial functions and feature extraction kernels are selected empirically in order to minimize computation while ensuring robust performance across a wide range of test images on a target imaging platform. The algorithm uses integer arithmetic, mostly relying on low-cost bit-wise shift and addition operations, and uses a strictly sequential architecture to provide a cost-effective and robust descreening solution in practical imaging devices including copiers and multifunction printers. We compare the performance of the proposed algorithm to other descreening solutions and demonstrate that the new algorithm improves quality over the existing methods while reducing computation.
机译:传统的电子照相打印机在用于打印从书籍和杂志等打印材料扫描的图像时,往往会产生MoireÃÂ,人工痕迹。我们提出了一种新颖的,非迭代的,非线性的且空间变异的去网纹滤波器,该滤波器可消除引起扫描文档中大量MoireÃÂβ引起的屏幕频率,同时保留图像的清晰度和边缘细节。该滤镜的灵感来自Perona-Malik的各向异性扩散方程。由于应用了滤波器而导致的图像强度的扩散量受边缘强度估计的支配,该边缘强度估计值在半色调噪声下很稳定。更精确地,过滤器提取空间特征向量,该空间特征向量包括从噪声输入图像的预平滑版本中的局部窗口估计的局部强度梯度。然后使用该特征向量的可调非线性多项式函数对强度梯度控制的离散扩散执行一次迭代。凭经验选择多项式函数和特征提取内核,以最大程度地减少计算,同时确保在目标成像平台上的各种测试图像上均具有强大的性能。该算法使用整数算术,主要依靠低成本的按位移位和加法运算,并使用严格的顺序体系结构为包括复印机和多功能打印机在内的实际成像设备提供经济高效且功能强大的去网解决方案。我们将提出的算法与其他去网屏解决方案的性能进行了比较,并证明了该新算法在减少计算量的同时,比现有方法提高了质量。

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