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Minkowski-metrics as a combination rule for digital-image-coding impairments

机译:Minkowski-Metrics作为数码图像编码障碍的组合规则

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The urge to compress the amount of information needed to represent digitized images while preserving perceptual image quality has led to a plethora of image-coding algorithms. At high data compression ratios, these algorithms usually introduce several coding artifacts, each impairing image quality to a greater or lesser extent. These impairments often occur simultaneously. For the evaluation of image-coding algorithms, it is important to find out how these impairments combine and how this can be described. The objective of the present study is to show that Minkowski-metrics can be used as a combination rule for small impairments like those usually encountered in digitally coded images. To this end, an experiment has been conducted in which subjects assessed the perceptual quality of scale-space- coded color images comprising three kinds of impairment, viz., 'unsharpness', 'phantoms' (dark/bright patches within bright/dark homogeneous regions) and 'color desaturation'. The results show an accumulation of these impairments that is efficiently described by a Minkowski-metric with an exponent of about two. The latter suggests that digital-image-coding impairments may be represented by a set of orthogonal vectors along the axes of a multidimensional Euclidean space. An extension of Minkowski- metrics is presented to generalize the proposed combination rule to large impairments.
机译:压缩代表数字化图像所需的信息量的冲突导致了一种多种图像编码算法。在高数据压缩比率下,这些算法通常将几个编码伪像引入,每个算法将图像质量损害到更大或更小的程度。这些损伤通常同时发生。为了评估图像编码算法,重要的是要了解这些损伤如何组合以及如何描述这一点。本研究的目的是表明Minkowski-Metrics可以用作像通常遇到的数字编码图像通常遇到的小损伤的组合规则。为此,已经进行了一个实验,其中受试者评估了包括三种损伤,viz的规模空间编码彩色图像的感知质量。,'unsharpness','phantoms'(明亮/深色的暗斑地区)和'颜色去饱和'。结果表明,这些损伤的积累是由Minkowski度量有效描述的,其具有约两个的指数。后者表明,数字图像编码损伤可以由一组沿一个多维欧几里得空间的轴正交矢量来表示。提出了Minkowski的延伸,以概括提出的组合规则到大的损伤。

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