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Subjective evaluation of scale-space image coding

机译:尺度空间图像编码的主观评估

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Abstract: Six experiments are described in which the perceived quality of scale- space-coded color images has been assessed by means of numerical category scaling. 'Scale space' is a pyramidal multiresolution image- coding technique in which data reduction is accomplished by quantizing the prediction error signals on different scales of the pyramid. This coding technique has been applied to the luminance as well as the chrominance components of color images of three static complex scenes. The main coding parameters were degree of uniform quantization and scale level of a quantization error. The results show that the magnitude of impairment due to quantizing the prediction error signal on a given scale of the luminance component depends on the scale level as well as on the content of the scene, that high-resolution color information does not contribute to image quality, that perceptually distinct impairments combine according to a Minkowski metric with an exponent that is slightly above 2 and that perceptually similar impairments combine according to a Minkowski metric with an exponent that is slightly above 1. The applicability of Allnatt's 'law of subjective addition' is discussed.!
机译:摘要:描述了六个实验,其中已经通过数字类别缩放对比例空间编码的彩色图像的感知质量进行了评估。 “尺度空间”是一种金字塔式多分辨率图像编码技术,其中,通过在金字塔的不同尺度上对预测误差信号进行量化来完成数据缩减。该编码技术已经应用于三个静态复杂场景的彩色图像的亮度以及色度分量。主要编码参数是均匀量化度和量化误差的小数位。结果表明,由于在给定比例的亮度分量上对预测误差信号进行量化而导致的损害程度取决于比例级别以及场景的内容,高分辨率颜色信息不会影响图像质量。 ,则感知上不同的损害根据Minkowski度量结合,指数略高于2,而感知上相似的损害根据Minkowski度量结合指数,略高于1。Allnatt的“主观加法则”的适用性是讨论过!

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