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A fast, high-quality inverse halftoning algorithm for error diffused halftones

机译:快速,高质量的逆半色调反演算法,用于误差扩散半色调

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Halftones and other binary images are difficult to process with causing several degradation. Degradation is greatly reduced if the halftone is inverse halftoned (converted to grayscale) before scaling, sharpening, rotating, or other processing. For error diffused halftones, we present (1) a fast inverse halftoning algorithm and (2) a new multiscale gradient estimator. The inverse halftoning algorithm is based on anisotropic diffusion. It uses the new multiscale gradient estimator to vary the tradeoff between spatial resolution and grayscale resolution at each pixel to obtain a sharp image with a low perceived noise level. Because the algorithm requires fewer than 300 arithmetic operations per pixel and processes 7/spl times/7 neighborhoods of halftone pixels, it is well suited for implementation in VLSI and embedded software. We compare the implementation cost, peak signal to noise ratio, and visual quality with other inverse halftoning algorithms.
机译:半色调和其他二进制图像很难处理,并且会引起一些劣化。如果在缩放,锐化,旋转或其他处理之前将半色调反转半色调(转换为灰度),则可以大大降低降级效果。对于误差扩散半色调,我们提出(1)快速逆半色调算法和(2)新的多尺度梯度估计器。逆半色调算法基于各向异性扩散。它使用新的多尺度梯度估计器来改变每个像素在空间分辨率和灰度分辨率之间的权衡,以获得具有低感知噪声水平的清晰图像。由于该算法每个像素需要少于300次算术运算,并且处理7 / spl次/ 7个半色调像素邻域,因此非常适合在VLSI和嵌入式软件中实施。我们将实现成本,峰值信噪比和视觉质量与其他逆半色调算法进行比较。

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