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基于观看距离的高清显示超分辨率技术。

Viewing-distance aware super-resolution for high-definition display.

出版信息

IEEE Trans Image Process. 2015 Jan;24(1):403-18. doi: 10.1109/TIP.2014.2375639. Epub 2014 Nov 25.

Abstract

In this paper, we propose a novel algorithm for high-definition displays to enlarge low-resolution images while maintaining perceptual constancy (i.e., the same field-of-view, perceptual blur radius, and the retinal image size in viewer's eyes). We model the relationship between a viewer and a display by considering two main aspects of visual perception, i.e., scaling factor and perceptual blur radius. As long as we enlarge an image while adjust its image blur levels on the display, we can maintain viewer's perceptual constancy. We show that the scaling factor should be set in proportion to the viewing distance and the blur levels on the display should be adjusted according to the focal length of a viewer. Toward this, we first refer to edge directions to interpolate a low-resolution image with the increasing of viewing distance and the scaling factor. After images are interpolated, we utilize a local contrast to estimate the spatially varying image blur levels of the interpolated image. We then further adjust the image blur levels using a parametric deblurring method, which combines L1 as well as L2 reconstruction errors, and Tikhonov with total variation regularization terms. By taking these factors into account, high-resolution images adaptive to viewing distance on a display can be generated. Experimental results on both natural image metric and user subjective studies across image scales demonstrate that the proposed super-resolution algorithm for high-definition displays performs favorably against the state-of-the-art methods.

摘要

在本文中,我们提出了一种新的算法,用于高清显示器在保持感知恒常性(即相同的视场、感知模糊半径和观看者眼中的视网膜图像大小)的情况下放大低分辨率图像。我们通过考虑视觉感知的两个主要方面,即缩放因子和感知模糊半径,来对观看者和显示器之间的关系进行建模。只要我们在放大图像的同时调整其在显示器上的图像模糊级别,就可以保持观看者的感知恒常性。我们表明,缩放因子应与观看距离成比例设置,而显示器上的模糊级别应根据观看者的焦距进行调整。为此,我们首先参考边缘方向,随着观看距离和缩放因子的增加,对低分辨率图像进行插值。在图像插值后,我们利用局部对比度来估计插值图像的空间变化图像模糊级别。然后,我们使用参数去模糊方法进一步调整图像模糊级别,该方法结合了 L1 和 L2 重建误差以及 Tikhonov 和全变差正则化项。通过考虑这些因素,可以生成适合显示器上观看距离的高分辨率图像。在自然图像度量和跨图像尺度的用户主观研究方面的实验结果表明,所提出的用于高清显示器的超分辨率算法优于最新方法。

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