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A Single Image Deblurring Algorithm for Nonuniform Motion Blur Using Uniform Defocus Map Estimation

机译:基于均匀散焦图估计的非均匀运动模糊单图像去模糊算法

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摘要

One of the most common artifacts in digital photography is motion blur. When capturing an image under dim light by using a handheld camera, the tendency of the photographer's hand to shake causes the image to blur. In response to this problem, image deblurring has become an active topic in computational photography and image processing in recent years. From the view of signal processing, image deblurring can be reduced to a deconvolution problem if the kernel function of the motion blur is assumed to be shift invariant. However, the kernel function is not always shift invariant in real cases; for example, in-plane rotation of a camera or a moving object can blur different parts of an image according to different kernel functions. An image that is degraded by multiple blur kernels is called a nonuniform blur image. In this paper, we propose a novel single image deblurring algorithm for nonuniform motion blur images that is blurred by moving object. First, a proposed uniform defocus map method is presented for measurement of the amounts and directions of motion blur. These blurred regions are then used to estimate point spread functions simultaneously. Finally, a fast deconvolution algorithm is used to restore the nonuniform blur image. We expect that the proposed method can achieve satisfactory deblurring of a single nonuniform blur image.
机译:数字摄影中最常见的伪影之一是运动模糊。使用手持相机在昏暗的光线下拍摄图像时,拍摄者的手晃动的趋势会使图像模糊。响应于该问题,近年来,图像去模糊已经成为计算摄影和图像处理中的活跃话题。从信号处理的角度来看,如果运动模糊的核函数假定为位移不变的,则可以将图像去模糊化为去卷积问题。但是,内核函数在实际情况下并不总是移位不变的。例如,相机或运动物体的面内旋转可能会根据不同的内核函数模糊图像的不同部分。被多个模糊内核降级的图像称为非均匀模糊图像。本文针对运动物体模糊的非均匀运动模糊图像提出了一种新颖的单图像去模糊算法。首先,提出了一种建议的均匀散焦图方法,用于测量运动模糊的量和方向。然后将这些模糊区域用于同时估计点扩散函数。最后,使用快速反卷积算法恢复非均匀模糊图像。我们期望所提出的方法能够对单个非均匀模糊图像实现令人满意的去模糊。

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  • 来源
    《Mathematical Problems in Engineering》 |2017年第2017期|6089650.1-6089650.14|共14页
  • 作者单位

    Natl Chung Hsing Univ, Dept Comp Sci & Engn, Taichung 402, Taiwan;

    Natl Chung Hsing Univ, Dept Comp Sci & Engn, Taichung 402, Taiwan;

    Natl Chung Hsing Univ, Dept Comp Sci & Engn, Taichung 402, Taiwan;

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