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Propagation of Noise Statistics in Digital Photofinishing Image Processing

机译:噪声统计在数字光折叠图像处理中的传播

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A highly influential factor in the performance of image processing algorithms is the amount of noise present in the digital image. A priori knowledge of the expected levels of noise in the image dramatically improves the performance and efficiency in image processing routines. In a digital photofinishing system, image noise is primarily attributed to film grain and scanner noise. Therefore, if the film and scanner sources are known, it is possible to deduce the expected noise level in a digital image. However, image processing applied to the image after scanning will affect the noise statistics. In order for the image processing algorithms to deliver optimum performance, the estimated noise statistics need to be modified according to each processing step applied. We consider image-processing operations as applying transformations to the image data, and corresponding ones to the image noise statistics. We will discuss analytic equations that approximate the propagation of image noise statistics through several basic image transformations, and their interaction with algorithms in a digital photofinishing image chain.
机译:图像处理算法性能的高度影响因素是数字图像中存在的噪声量。图像中预期噪声水平的先验知识显着提高了图像处理例程中的性能和效率。在数字光缺陷系统中,图像噪声主要归因于薄膜晶粒和扫描仪噪声。因此,如果已知胶片和扫描仪源,则可以推断数字图像中的预期噪声水平。但是,扫描后应用于图像的图像处理会影响噪声统计信息。为了使图像处理算法提供最佳性能,需要根据所应用的每个处理步骤修改估计的噪声统计。我们将图像处理操作考虑到将变换应用于图像数据,以及对应于图像噪声统计的变换。我们将讨论通过几个基本图像转换近似图像噪声统计传播的分析方程,以及它们与数字光素图像链中的算法的交互。

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