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A method of constructing motion-blurred image based on weighted accumulation of subimages

机译:基于子谐像加权累积构建运动模糊图像的方法

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A new approach of degrading image is presented.This method has four steps: obtain the number of the subimages first,and then these subimages are constructed,the third step is calculating the weight of each subimage according to its velocity,at last motion-blurred image is constructed by weighted accumulating the subimages.We compared the effects between the method of this article and existing algorithms by using accelerated motion-blurred images and retrace motion-blurred images separately.The maximum absolute differences between the accelerated motion-blurred images degraded by the method of this article and the existing algorithms which are discrete convolution (DC) and discrete Fourier transform (DFT) are 2.5580×10-13 and 3.4106×10-13 separately.And the maximum absolute differences are 2.5580×10-13 and 3.4106×10-13 separately for retrace motion-blurred images.It can be proved that the performances of different methods are the same.The time consumed by degrading images of different forms of motion is less than half a second,close to the time consumed by DFT,but hundreds of seconds shorter than DC.What’s more,the process of the method of this article strongly resembles the real imaging process,so it can be comprehended more easily than the existing algorithms.
机译:提出了一种新的降解图像的方法。该方法具有四个步骤:首先获得子图像的数量,然后构造这些子图像,第三步是根据其速度计算每个子图的权重,最后的运动模糊通过加权累积子图构造图像。我们通过分别使用加速运动模糊图像和回溯运动模糊图像来比较本物品的方法和现有算法之间的效果。加速运动模糊图像之间的最大绝对差异本文的方法和作为离散卷积(DC)和离散傅里叶变换(DFT)的现有算法分别为2.5580×10-13和3.4106×10-13。并且最大绝对差异为2.5580×10-13和3.4106 ×10-13分别用于回溯运动模糊图像。可以证明不同方法的性能是相同的。通过不同f的劣化图像消耗的时间运动的ORMS的措施小于半秒,接近DFT消耗的时间,但数百秒比DC短。更多的是,本文的方法的过程强烈类似于真正的成像过程,因此可以更加容易理解它容易比现有算法。

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