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Adaptive multidirectional edge directed interpolation for selected edge regions

机译:所选边缘区域的自适应多向边缘有向插值

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This paper proposes an adaptive edge-directed interpolation algorithm using multidirectional neighbor pixels. In order to restore multidirectional edges, a missing pixel is estimated as a weighted sum of 12 neighbor pixels. Based on the geometric duality between a low resolution image and a high resolution image, interpolation coefficients are predicted using Wiener filter theory. In order to reduce the computational complexity, interpolation region selection method is also proposed. An edge map for a low resolution image is obtained by canny edge detector. By analyzing edge continuities, only long edge regions are interpolated using 12 neighbor pixels. Short edge regions are interpolated by new edge-directed interpolation, and even regions are interpolated by a linear interpolation. Simulation results show that a proposed method restores major edges with several directions better than other methods in subjective tests while showing fair performance in objective tests.
机译:提出了一种使用多方向邻域像素的自适应边缘定向插值算法。为了恢复多方向边缘,将丢失的像素估计为12个相邻像素的加权和。基于低分辨率图像和高分辨率图像之间的几何对偶性,使用维纳滤波器理论预测插值系数。为了降低计算复杂度,还提出了插值区域选择方法。低分辨率图像的边缘图是通过canny边缘检测器获得的。通过分析边缘连续性,仅使用12个相邻像素插值长边缘区域。短边区域通过新的边沿定向插值进行插值,偶数区域通过线性插值进行插值。仿真结果表明,所提出的方法在主观测试中可以比其他方法更好地还原多个方向的主边缘,同时在客观测试中表现出良好的性能。

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