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Efficient blind image restoration using discrete periodic Radon transform

机译:使用离散周期Radon变换的高效盲图像复原

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Restoring an image from its convolution with an unknown blur function is a well-known ill-posed problem in image processing. Many approaches have been proposed to solve the problem and they have shown to have good performance in identifying the blur function and restoring the original image. However, in actual implementation, various problems incurred due to the large data size and long computational time of these approaches are undesirable even with the current computing machines. In this paper, an efficient algorithm is proposed for blind image restoration based on the discrete periodic Radon transform (DPRT). With DPRT, the original two-dimensional blind image restoration problem is converted into one-dimensional ones, which greatly reduces the memory size and computational time required. Experimental results show that the resulting approach is faster in almost an order of magnitude as compared with the traditional approach, while the quality of the restored image is similar.
机译:使用未知的模糊函数从卷积中恢复图像是图像处理中众所周知的不适定问题。已经提出了许多方法来解决该问题,并且它们已经表明在识别模糊功能和恢复原始图像方面具有良好的性能。然而,在实际实现中,即使使用当前的计算机,也不希望由于这些方法的大数据量和长计算时间而引起的各种问题。本文提出了一种基于离散周期Radon变换(DPRT)的盲图像复原算法。使用DPRT,可以将原始的二维盲图像恢复问题转换为一维问题,从而大大减少了内存大小和所需的计算时间。实验结果表明,与传统方法相比,所得方法几乎快了一个数量级,而恢复的图像的质量却相似。

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