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Smoothing and enhancement algorithms for underwater images based on partial differential equations

机译:基于偏微分方程的水下图像平滑与增强算法

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摘要

The formulation and application of an algorithm based on partial differential equations for processing underwater images are presented. The proposed algorithm performs simultaneous smoothing and enhancement operations on the image and yields better contrast enhancement, color correction, and rendition compared to conventional algorithms. Further modification of the proposed algorithm and its combination with the powerful contrast-limited adaptive histogram equalization (CLAHE) method using an adaptive computation of the clip limit enhances the local enhancement results while mitigating the color distortion and intrinsic noise enhancement observed in the CLAHE algorithm. Ultimately, an optimized version of the algorithm based on image information metric is developed for best possible results for all images. The method is compared with existing algorithms from the literature using subjective and objective measures, and results indicate considerable improvement over several well-known algorithms. (C) 2017 SPIE and IS&T
机译:提出了基于偏微分方程的水下图像处理算法的提出与应用。与常规算法相比,所提出的算法对图像执行同时的平滑和增强操作,并产生更好的对比度增强,色彩校正和再现。所提出算法的进一步修改及其与强大的对比度限制自适应直方图均衡(CLAHE)方法的结合(使用剪辑限制的自适应计算)可以增强局部增强效果,同时可以减轻CLAHE算法中观察到的颜色失真和固有噪声增强。最终,为所有图像的最佳结果开发了基于图像信息度量的算法的优化版本。使用主观和客观方法将该方法与文献中的现有算法进行了比较,结果表明,相对于几种众所周知的算法,已有了相当大的改进。 (C)2017 SPIE和IS&T

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