IEEE Trans Image Process. 2014 Aug;23(8):3698-710. doi: 10.1109/TIP.2014.2332394. Epub 2014 Jun 23.
Currently, most electrophotographic printers use halftoning technique to print continuous tone images, so scanned images obtained from such hard copies are usually corrupted by screen like artifacts. In this paper, a new model of scanned halftone image is proposed to consider both printing distortions and halftone patterns. Based on this model, an adaptive filtering based descreening method is proposed to recover high quality contone images from the scanned images. Image redundancy based denoising algorithm is first adopted to reduce printing noise and attenuate distortions. Then, screen frequency of the scanned image and local gradient features are used for adaptive filtering. Basic contone estimate is obtained by filtering the denoised scanned image with an anisotropic Gaussian kernel, whose parameters are automatically adjusted with the screen frequency and local gradient information. Finally, an edge-preserving filter is used to further enhance the sharpness of edges to recover a high quality contone image. Experiments on real scanned images demonstrate that the proposed method can recover high quality contone images from the scanned images. Compared with the state-of-the-art methods, the proposed method produces very sharp edges and much cleaner smooth regions.
目前,大多数静电印刷打印机都采用半色调技术来打印连续色调图像,因此从这类硬拷贝获取的扫描图像通常会受到网纹状伪影的干扰。本文提出了一种新的扫描半色调图像模型,该模型同时考虑了打印失真和半色调模式。在此模型的基础上,提出了一种基于自适应滤波的去网纹方法,以便从扫描图像中恢复高质量的连续色调图像。首先采用基于图像冗余的去噪算法来降低打印噪声和失真。然后,利用扫描图像的屏频和局部梯度特征进行自适应滤波。通过用各向异性高斯核对去噪后的扫描图像进行滤波,可以得到基本连续色调估计,该核的参数会根据屏频和局部梯度信息自动调整。最后,使用边缘保持滤波器进一步增强边缘的锐度,以恢复高质量的连续色调图像。在真实扫描图像上的实验结果表明,与现有的方法相比,所提出的方法能够从扫描图像中恢复高质量的连续色调图像,生成的边缘非常锐利,平滑区域更加干净。