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Nonlinear mapping for dynamic range compression in digital images

机译:用于数字图像动态范围压缩的非线性映射

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摘要

The dynamic range of an image is denned as the ratio between the maximum and minimum luminance value it contains. This value in real images can be several thousands or even millions, whereas the dynamic range of consumer imaging devices rarely exceeds 100; therefore some processing is needed in order to display a high dynamic range image correctly. Global operators map each pixel individually with the same nonlinear function; local operators use spatially-variant functions in order to achieve a higher quality. The lower computational cost of global operators makes them attractive for real-time processing; the nonlinear mapping can however attenuate the image details. In this paper we define an expression which gives a quantitative measure of this artifact, and compare the performance of some commonly used operators. We show that a modified logarithm we propose has a satisfactory performance for a wide class of images, and has a theoretical justification based on some properties of the human visual system. We also introduce a method for the automatic tuning of the parameters of our system, based on the statistics of the input image. We finally compare our method with others proposed in the literature.
机译:图像的动态范围定义为图像所包含的最大和最小亮度值之比。实际图像中的此值可能为数千甚至上百万,而消费类成像设备的动态范围很少超过100;因此需要进行一些处理才能正确显示高动态范围图像。全局算子使用相同的非线性函数分别映射每个像素。本地运营商使用空间变化函数来获得更高的质量。全局运算符的较低计算成本使其对于实时处理具有吸引力。然而,非线性映射可以削弱图像细节。在本文中,我们定义了一个表达式,该表达式给出了对该伪像的定量度量,并比较了一些常用算子的性能。我们表明,我们提出的修改对数在各种图像中均具有令人满意的性能,并且具有基于人类视觉系统某些特性的理论依据。我们还介绍了一种基于输入图像的统计信息自动调整系统参数的方法。最后,我们将我们的方法与文献中提出的其他方法进行了比较。

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