Optimal Reference Frame Search Algorithm for Better Restoration of Image Sequences Distorted by Turbulence of the Medium

A. Balakirev, K. K. Halder, S. Anavatti, M. Garratt
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Abstract

This paper presents a novel approach in image restoration based on calculating the pixel shift-maps of geometrically distorted images in a video sequence and using these maps to obtain non-distorted frames by de-warping the originals. In the similar previous approaches, the reference frame in the image registration process for pixel shift-maps calculation is selected either using a blind image quality metric or simply using the first frame. However, the former technique may not estimate the best frame accurately in the sense of geometric distortion. As for the latter, there is always a possibility that the first frame is one of the most distorted ones in the sequence. In the proposed method, an optimal reference frame search algorithm is introduced to improve the quality of restored frames and to yield a stable video output. The proposed method was applied both to synthetic and real data sets, and simulation results show significant improvement in comparison to the state-of- the-art methods.
最优参考帧搜索算法更好地恢复被介质湍流扭曲的图像序列
本文提出了一种新的图像恢复方法,该方法基于计算视频序列中几何扭曲图像的像素位移映射,并利用这些映射通过对原始图像进行去扭曲来获得非扭曲帧。在之前类似的方法中,使用盲图像质量度量来选择图像配准过程中的参考帧,或者直接使用第一帧。然而,前一种技术可能无法准确地估计几何畸变意义上的最佳帧。对于后者,总是有可能第一帧是序列中失真最严重的帧之一。在该方法中,引入了一种最优参考帧搜索算法,以提高恢复帧的质量并产生稳定的视频输出。将该方法应用于合成数据集和真实数据集,仿真结果表明,与目前的方法相比,该方法有了显著的改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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