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Method for image interpolation based on a novel multirate filter bank structure and properties of the human visual system

机译:基于新型多速率滤波器组结构和人类视觉系统特性的图像插值方法

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Abstract: Image interpolation systems are used to render a high resolution version of an image from a lower resolution representation. Conventional interpolation systems such as bilinear interpolation and nearest neighbor interpolation often perform poorly (in a subjective sense) when acting on a spatial region of an image which has an oriented structure such as an edge, line, or corner. Recently, systems based on directional interpolation have been presented which yield improved performance on these oriented structures. However, separate models are used for the detection of edges, lines, and corners. In this work, we combine simple building blocks (a Sobel edge detector, directional interpolation, and the directional filter bank) to form a system which exploits the orientational tuning and the spatial-frequency variant sensitivity of the human visual system. The new system handles all of the oriented features in the same manner. First, the image to be processed is split into its directional components. These directional components are then individually interpolated using the directional interpolation system. Since orthogonal (or nearly orthogonal components) are contained in different directional components, corners do not exist in the directional components. Furthermore, since the directional filter bank is an exactly reconstructing structure, the representation of the image in terms of its directional components is complete and thereby an invertible decomposition. In the absence of an oriented component, the directional interpolation system reverts to bilinear interpolation (though any other interpolant could be used).!21
机译:摘要:图像插值系统用于从较低分辨率的表示形式渲染图像的高分辨率版本。当作用于具有诸如边缘,线或角之类的定向结构的图像的空间区域上时,诸如双线性插值和最近邻插值的常规插值系统通常表现较差(在主观上)。最近,已经提出了基于定向插值的系统,这些系统在这些定向结构上产生了改进的性能。但是,将单独的模型用于检测边缘,直线和拐角。在这项工作中,我们结合了简单的构造块(Sobel边缘检测器,定向插值和定向滤波器组),形成了一个利用人类视觉系统的定向调谐和空间频率变化敏感性的系统。新系统以相同的方式处理所有定向特征。首先,将要处理的图像分为其方向分量。然后使用方向插值系统分别对这些方向分量进行插值。由于正交(或近乎正交)分量包含在不同的方向分量中,因此在这些方向分量中不存在拐角。此外,由于定向滤波器组是精确的重构结构,因此就其定向分量而言,图像的表示是完整的,从而可逆分解。在没有定向分量的情况下,定向插值系统将恢复为双线性插值(尽管可以使用任何其他插值)。21

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