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基于有理分形插值的单幅图像超分辨率

Single-Image Super-Resolution Based on Rational Fractal Interpolation.

出版信息

IEEE Trans Image Process. 2018 Aug;27(8):3782-3797. doi: 10.1109/TIP.2018.2826139.

Abstract

This paper presents a novel single-image super-resolution (SR) procedure, which upscales a given low-resolution (LR) input image to a high-resolution image while preserving the textural and structural information. First, we construct a new type of bivariate rational fractal interpolation model and investigate its analytical properties. This model has different forms of expression with various values of the scaling factors and shape parameters; thus, it can be employed to better describe image features than current interpolation schemes. Furthermore, this model combines the advantages of rational interpolation and fractal interpolation, and its effectiveness is validated through theoretical analysis. Second, we develop a single-image SR algorithm based on the proposed model. The LR input image is divided into texture and non-texture regions, and then, the image is interpolated according to the characteristics of the local structure. Specifically, in the texture region, the scaling factor calculation is the critical step. We present a method to accurately calculate scaling factors based on local fractal analysis. Extensive experiments and comparisons with the other state-of-the-art methods show that our algorithm achieves competitive performance, with finer details and sharper edges.

摘要

本文提出了一种新的单幅图像超分辨率 (SR) 处理方法,可在保留纹理和结构信息的同时,将给定的低分辨率 (LR) 输入图像上采样到高分辨率图像。首先,我们构建了一种新型的双变量有理分形插值模型,并研究了其分析性质。该模型具有不同的表达式形式,适用于不同的缩放因子和形状参数值,因此能够比现有插值方法更好地描述图像特征。此外,该模型结合了有理插值和分形插值的优点,通过理论分析验证了其有效性。其次,我们基于所提出的模型开发了一种单幅图像 SR 算法。将 LR 输入图像分为纹理和非纹理区域,然后根据局部结构特征进行图像插值。具体来说,在纹理区域中,缩放因子的计算是关键步骤。我们提出了一种基于局部分形分析的精确计算缩放因子的方法。与其他最先进的方法进行广泛的实验和比较表明,我们的算法具有竞争力的性能,能够获得更精细的细节和更锐利的边缘。

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