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Antialiasing Filter Design for Subpixel Downsampling via Frequency-Domain Analysis

机译:通过频域分析实现亚像素下采样的抗混叠滤波器设计

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In this paper, we are concerned with image downsampling using subpixel techniques to achieve superior sharpness for small liquid crystal displays (LCDs). Such a problem exists when a high-resolution image or video is to be displayed on low-resolution display terminals. Limited by the low-resolution display, we have to shrink the image. Signal-processing theory tells us that optimal decimation requires low-pass filtering with a suitable cutoff frequency, followed by downsampling. In doing so, we need to remove many useful image details causing blurring. Subpixel-based downsampling, taking advantage of the fact that each pixel on a color LCD is actually composed of individual red, green, and blue subpixel stripes, can provide apparent higher resolution. In this paper, we use frequency-domain analysis to explain what happens in subpixel-based downsampling and why it is possible to achieve a higher apparent resolution. According to our frequency-domain analysis and observation, the cutoff frequency of the low-pass filter for subpixel-based decimation can be effectively extended beyond the Nyquist frequency using a novel antialiasing filter. Applying the proposed filters to two existing subpixel downsampling schemes called direct subpixel-based downsampling (DSD) and diagonal DSD (DDSD), we obtain two improved schemes, i.e., DSD based on frequency-domain analysis (DSD-FA) and DDSD based on frequency-domain analysis (DDSD-FA). Experimental results verify that the proposed DSD-FA and DDSD-FA can provide superior results, compared with existing subpixel or pixel-based downsampling methods.
机译:在本文中,我们关注使用子像素技术对小型液晶显示器(LCD)实现出色清晰度的图像下采样。当要在低分辨率显示终端上显示高分辨率图像或视频时,存在这样的问题。受低分辨率显示器的限制,我们必须缩小图像。信号处理理论告诉我们,最佳抽取需要具有适当截止频率的低通滤波,然后再进行下采样。为此,我们需要删除许多有用的图像细节,从而导致模糊。利用彩色LCD上的每个像素实际上由单独的红色,绿色和蓝色子像素条纹组成的事实,基于子像素的下采样可以提供更高的分辨率。在本文中,我们使用频域分析来解释基于子像素的下采样会发生什么以及为什么有可能实现更高的视在分辨率。根据我们的频域分析和观察,使用新型抗混叠滤波器可以有效地将基于亚像素抽取的低通滤波器的截止频率扩展到奈奎斯特频率以外。将建议的滤波器应用于两个现有的子像素下采样方案,称为直接子像素下采样(DSD)和对角DSD(DDSD),我们获得了两种改进的方案,即基于频域分析的DSD(DSD-FA)和基于DDSD的DDSD。频域分析(DDSD-FA)。实验结果证明,与现有的子像素或基于像素的下采样方法相比,提出的DSD-FA和DDSD-FA可以提供更好的结果。

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