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Parallel Implementation of Edge-Directed Image Interpolation on a Graphics Processing Unit

机译:边缘定向图像插值在图形处理单元上的并行实现

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The edge-directed interpolation scheme is a non-iterative, orientation-adaptive method to enhance image resolution with better visual effect than conventional interpolation methods. It interpolates the missing pixels based on the covariance of a high-resolution image estimated from the covariance of the low-resolution image. In spite of the impressive performance, the computational complexity of covariance-based adaptation is significantly higher than that of the conventional linear interpolation algorithms. In this paper, we propose a GPU-based massively parallel version of the edge-directed interpolation scheme. A speedup of 61.7x can be achieved with respect to its single-threaded CPU counterpart in the host computer.
机译:边缘定向插值方案是一种非迭代,方向自适应的方法,与常规插值方法相比,它可以以更好的视觉效果来增强图像分辨率。它根据从低分辨率图像的协方差估计的高分辨率图像的协方差对丢失的像素进行插值。尽管性能令人印象深刻,但基于协方差的自适应的计算复杂度明显高于常规线性插值算法。在本文中,我们提出了一种基于GPU的边缘定向插值方案的大规模并行版本。相对于主机中的单线程CPU而言,可以达到61.7倍的加速。

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