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Small Color Differences in the Very Pale and Dark Grayish Regions Measured by Camera

机译:相机测得的浅色和深灰色区域的色差很小

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摘要

The camera capability to measure small color differences between sample pairs is evaluated by comparing the camera performance with a reference instrument. To this end, the appropriate working conditions are established, the camera spectral sensitivities and imaging noise are characterized, and the transformation to obtain a device independent representation of color is calculated considering two approaches: one, on the basis of the camera spectral sensitivity (CSS), and two, on the basis of the unified measure of goodness of the camera (UMG) that involves an imaging noise model. The camera performance is assessed from the measurement results of a large number of varied small color differences in the very pale and the dark grayish color regions, the involved uncertainty, the absolute discrepancy, and the relative discrepancy with respect to the reference instrument. In the experimental application, the three CCD camera SONY DX-9100P is assessed and compared with the spectroradiometer Photo Research PR-715 as reference instrument. The results reveal a high quality performance of the camera system, with absolute discrepancies in the estimation of color differences around the camera tolerances (CIELAB 0.5ΔE~*_(ab) or CIEDE2000 0.6 _(00)). The color uniformity in textile dying is evaluated by analyzing some pairs of extreme center fabric samples. Although the camera is more sensitive to the texture effects than the spectroradiometer, both instruments yield consistent and satisfactory Pass/Fail results.
机译:通过将相机性能与参考仪器进行比较,可以评估相机测量样品对之间微小色差的能力。为此,建立了适当的工作条件,表征了摄像机的光谱灵敏度和成像噪声,并考虑了两种方法来计算获得与设备无关的颜色表示的变换:一种是基于摄像机的光谱灵敏度(CSS) )和两个,基于涉及成像噪声模型的摄像机(UMG)优劣的统一度量。摄像机的性能是根据非常浅和深灰色区域的大量变化的小色差,涉及的不确定性,绝对差异和相对于参考仪器的相对差异的测量结果评估的。在实验应用中,对三台CCD摄像机SONY DX-9100P进行了评估,并与分光辐射仪Photo Research PR-715作为参考仪器进行了比较。结果显示了相机系统的高质量性能,在相机容差周围的色差估计中存在绝对差异(CIELAB0.5ΔE〜* _(ab)或CIEDE2000 0.6_(00))。通过分析几对极端中心织物样品来评估纺织品染色中的颜色均匀性。尽管照相机比分光辐射仪对纹理效果更敏感,但两种仪器都能产生一致且令人满意的通过/失败结果。

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