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A Generalized Unsharp Masking Algorithm

机译:广义的不锐化屏蔽算法

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摘要

Enhancement of contrast and sharpness of an image is required in many applications. Unsharp masking is a classical tool for sharpness enhancement. We propose a generalized unsharp masking algorithm using the exploratory data model as a unified framework. The proposed algorithm is designed to address three issues: 1) simultaneously enhancing contrast and sharpness by means of individual treatment of the model component and the residual, 2) reducing the halo effect by means of an edge-preserving filter, and 3) solving the out-of-range problem by means of log-ratio and tangent operations. We also present a study of the properties of the log-ratio operations and reveal a new connection between the Bregman divergence and the generalized linear systems. This connection not only provides a novel insight into the geometrical property of such systems, but also opens a new pathway for system development. We present a new system called the tangent system which is based upon a specific Bregman divergence. Experimental results, which are comparable to recently published results, show that the proposed algorithm is able to significantly improve the contrast and sharpness of an image. In the proposed algorithm, the user can adjust the two parameters controlling the contrast and sharpness to produce the desired results. This makes the proposed algorithm practically useful.
机译:在许多应用中需要增强图像的对比度和清晰度。锐化遮罩是提高清晰度的经典工具。我们提出了一种使用探索性数据模型作为统一框架的广义模糊锐化掩蔽算法。所提出的算法旨在解决三个问题:1)通过分别处理模型分量和残差同时增强对比度和清晰度,2)通过边缘保留滤波器减少光晕效果,以及3)解决通过对数比和切线运算来解决超出范围的问题。我们还对对数比运算的性质进行了研究,并揭示了Bregman发散与广义线性系统之间的新联系。这种连接不仅为此类系统的几何特性提供了新颖的见解,而且为系统开发开辟了新的途径。我们提出了一个新的系统,称为切线系统,它基于特定的Bregman散度。与最近发表的结果相当的实验结果表明,所提出的算法能够显着提高图像的对比度和清晰度。在提出的算法中,用户可以调整控制对比度和清晰度的两个参数以产生所需的结果。这使得所提出的算法实际上是有用的。

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