The algorithm of motion blur image restoration based on PSF half-blind estimation

Da-ke Chen, Zhe Lin
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引用次数: 1

Abstract

A novel algorithm of motion blur image restoration based on PSF half-blind estimation with Hough transform was introduced on the basis of full analysis of the principle of TDICCD camera, with the problem that vertical uniform linear motion estimation used by IBD algorithm as the original value of PSF led to image restoration distortion. Firstly, the mathematical model of image degradation was established with the transcendental information of multi-frame images, and then two parameters (movement blur length and angle) that have crucial influence on PSF estimation was set accordingly. Finally, the ultimate restored image can be acquired through multiple iterative of the initial value of PSF estimation in Fourier domain, which the initial value was gained by the above method. Experimental results show that the proposal algorithm can not only effectively solve the image distortion problem caused by relative motion between TDICCD camera and movement objects, but also the details characteristics of original image are clearly restored.
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基于PSF半盲估计的运动模糊图像恢复算法
在充分分析TDICCD相机原理的基础上,针对IBD算法使用垂直均匀线性运动估计作为PSF的原始值导致图像恢复失真的问题,提出了一种基于Hough变换的PSF半盲估计的运动模糊图像恢复新算法。首先,利用多帧图像的先验信息建立图像退化的数学模型,然后设置对PSF估计有重要影响的两个参数(运动模糊长度和运动模糊角度)。最后,通过对Fourier域中PSF估计的初值进行多次迭代,得到最终的恢复图像,该初值由上述方法获得。实验结果表明,该算法不仅能有效地解决TDICCD相机与运动物体之间的相对运动引起的图像畸变问题,而且能清晰地还原原始图像的细节特征。
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